PUBLICATIONS
Journal Articles
2023
![](http://maksudrahman.com/wp-content/uploads/2023/11/60.Green-Chemistry.jpg)
59. Economic and Environmental Assessment of Asphaltene-derived Carbon Fiber Production
Bari, M.A.A.; Nabil, S.; Saad, S.; Sarkar, R.; Sabiha, S.; Rahman, M. M.; Kibria, Md.
Green Chemistry 2023, 25, 6446-6458.
![](http://maksudrahman.com/wp-content/uploads/2023/11/59.Cell-Reports-Physical-Science.gif)
58. Processing Dynamics of Carbon Nanotube–Epoxy Nanocomposites during 3D Printing
Khater, A.; Saadi, M. A. S. R.; Bhattacharyya, S.; Kutana, A.; Tripathi, M.; Kamble, M.; Song, S.; Lou, M.; Barnes, M.; Meyer, M.; Harikrishnan, V.; Dalton, A. B.; Koratkar, N.; Tiwary, C. S.; Boul, P. J.; Yakobson, B.; Zhu, H.; Ajayan, P. M.; Rahman, M. M.*
Cell Reports Physical Science 2023, 4, 101617.
![](http://maksudrahman.com/wp-content/uploads/2023/11/58.Cell-Reports-Physical-SCience.gif)
57. Functional Wood for Carbon Dioxide Capture
Roy, S.; Philip, F.A.; Oliveira, E.F.; Singh, G.; Joseph, S.; Yadav, R.M.; Adumbumkulath, A.; Hassan, S.; Khater, A.; Vinu, A.; Shimizu, G.; Ajayan, P.M.; Kibria, M.G.; Rahman, M. M.*
Cell Reports Physical Science 2023, 4, 101269.
![](http://maksudrahman.com/wp-content/uploads/2023/11/57.Acs-Nano-scaled.jpg)
56. Graphene as Thinnest Coating on Copper Electrodes in Microbial Methanol Fuel Cells
Islam, J.; Obulisamy, P.K.; Upadhyayula, V.K.K.; Dalton, A.B.; Ajayan, P.M.; Rahman, M. M.*; Tripathi, M.; Sani, R.; Gadhamshetty, V.
ACS Nano 2023, 17, 1, 137-145.
![](http://maksudrahman.com/wp-content/uploads/2023/11/56.MSSP_.jpg)
55. 3D printed metamaterials for Damping Enhancement and Vibration Isolation: Schwarzites
Herkal, S.; Rahman, M. M.*; Nagarajah, S.; Harikrishnan, V, Ajayan, P. M.
Mechanical Systems and Signal Processing 2023, 185, 109819.
2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/55.ACS-Materials-Letters.jpg)
54. Solvent induced incremental pore collapse in two-dimensional covalent organic frameworks
Zhu, D.; Yan, Q.; Zhu, Y.; Ajnsztajn, A.; Rahman, M. M.; Ajayan, P.M.; Verduzco, R.
ACS Materials Letter 2022, 4, 2368-2374.
![](http://maksudrahman.com/wp-content/uploads/2023/11/54.Science-Advance.jpg)
53. Sustainable Valorization of Asphaltene via Flash Joule Heating
Saadi, M.A.S.R.; Advincula, P.A.; Thakur, M.S.H.; Khater, A.; Saad, S.; Zeraati, A.s.; Nabil, S.K.; Zinke, A.; Roy, S.; Lou, M.; Bheemasetti, S.N.; Bari, M.A.A.; Zheng, Y.; Beckham, J.L.; Gadhamshetty, V.; Vashisth, A.; Kibria, M.G.; Tour, J.M.; Ajayan, P.M.; Rahman, M. M.
Science Advances 2022, 8, eadd3555.
![](http://maksudrahman.com/wp-content/uploads/2023/11/52.Chem-Catalyst.gif)
52. Zero-crossover electrochemical CO2 reduction to ethylene with coproduction of valuable chemicals
Khan, M.A.; Nabil, S.K.; Al-Attas, T.; Yasri, N.G..; Roy, S.; Rahman, M. M.; Larter, S.; Ajayan, P.M.; Hu, J.; Kibria, M.G.
Chem Catalysis 2022, 2(8), 2077-2095.
![](http://maksudrahman.com/wp-content/uploads/2023/11/53.Chemical-Science.jpg)
51. Understanding fragility and engineering activation stability in two-dimensional covalent organic frameworks
Zhu, D.; Zhang, J.-J.; Wu, X.; Yan, Q.; Liu, F.; Zhu, Y.; Gao, X.; M. Rahman, M.; I. Yakobson, B.; M. Ajayan, P.; Verduzco, R.
Chemical Science 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/48.ADVANCED-SUSTAINABLE-SYSTEMS.jpg)
50. 3D Printed Materials in Water Treatment Applications
Ghosal, P.; Gupta, B.; Ambekar, R. S.; Rahman, M. M.; Ajayan, P. M.; Aich, N.; Gupta, A. K.; Tiwary, C. S.
Advanced Sustainable Systems 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/50.ADVANCED-MATERIALS.webp)
49. Direct Ink Writing: A 3D Printing Technology for Diverse Materials
Saadi, M. a. S. R.; Maguire, A.; Pottackal, N. T.; Thakur, M. S. H.; Ikram, M. Md.; Hart, A. J.; Ajayan, P. M.; Rahman, M. M.
Advanced Materials 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/51.ACS-OMEGA-scaled.jpg)
48. Oxygen Reduction Reaction with Manganese Oxide Nanospheres in Microbial Fuel Cells
Vemuri, B.; Chilkoor, G.; Dhungana, P.; Islam, J.; Baride, A.; Koratkar, N.; Ajayan, P. M.; Rahman, M. M.; Hoefelmeyer, J. D.; Gadhamshetty, V.
ACS Omega 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/49.Carbon.gif)
47. Transformation of petroleum asphaltenes to carbon fibers
Saad, S.; Zeraati, A. S.; Roy, S.; Shahriar Rahman Saadi, M. A.; Radović, J. R.; Rajeev, A.; Miller, K. A.; Bhattacharyya, S.; Larter, S. R.; Natale, G.; Sundararaj, U.; Ajayan, P. M.; Rahman, M. M.; Kibria, M. G.
Carbon 2022
2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/43.Advanced-Materials.gif)
45. Corrosion Resistance of Sulfur-Selenium Alloy Coatings
Susarla, S.; Chilkoor, G.; Cui, Y.; Arif, T.; Tsafack, T.; Puthirath, A.B.; Sudeep, P. M.; Kalimuthu, J. R.; Hassan, A.; Castro-Pardo, S.; Barnes, M.; Verduzco, R.; Filleter, T.; Koratkar, N.; Gadhamshetty, V.; Rahman, M. M.*; Ajayan, P. M.
Advanced Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/43.Advanced-Materials.gif)
44 .Structure, Properties and Applications of Two‐Dimensional Hexagonal Boron Nitride
S. Roy, X. Zhang, A. B. Puthirath, A. Meiyazhagan, S. Bhattacharyya, M. M. Rahman, G. Babu, S. Susarla, S. K. Saju, M. K. Tran, L. M. Sassi, M. a. S. R. Saadi, J. Lai, O. Sahin, S. M. Sajadi, B. Dharmarajan, D. Salpekar, N. Chakingal, A. Baburaj, X. Shuai, A. Adumbumkulath, K. A. Miller, J. M. Gayle, A. Ajnsztajn, T. Prasankumar, V. V. J. Harikrishnan, V. Ojha, H. Kannan, A. Z. Khater, Z. Zhu, S. A. Iyengar, P. A. da S. Autreto, E. F. Oliveira, G. Gao, A. G. Birdwell, M. R. Neupane, T. G. Ivanov, J. Taha-Tijerina, R. M. Yadav, S. Arepalli, R. Vajtai, P. M. Ajayan
Advanced Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/45.Small_.gif)
43. Graphene Confers Ultralow Friction on Nanogear Cogs
A. Mescola, G. Paolicelli, S. P. Ogilvie, R. Guarino, J. G. McHugh, A. Rota, E. Iacob, E. Gnecco, S. Valeri, N. M. Pugno, V. Gadhamshetty, M. M. Rahman, P. Ajayan, A. B. Dalton, M. Tripathi
Small 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/43.Advanced-Materials.gif)
42. Corrosion Resistance of Sulfur–Selenium Alloy Coatings
Susarla, S.; Chilkoor, G.; Kalimuthu, J. R.; Saadi, M. a. S. R.; Cui, Y.; Arif, T.; Tsafack, T.; Puthirath, A. B.; Sigdel, P.; Jasthi, B.; Sudeep, P. M.; Hu, L.; Hassan, A.; Castro-Pardo, S.; Barnes, M.; Roy, S.; Verduzco, R.; Kibria, M. G.; Filleter, T.; Lin, H.; Solares, S. D.; Koratkar, N.; Gadhamshetty, V.; Rahman, M. M.; Ajayan, P. M.
Advanced Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/40.Chemistry-of-Materials.jpg)
41. Patterning, Transfer, and Tensile Testing of Covalent Organic Frameworks Films with Nanoscale Thickness
Zhu, D.; Hu, Z.; Rogers, T.; Barnes, M.; Tseng, C.; Mei, H.; Sassi, L.; Zhang, Z.; Rahman, M. M.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/40.Chemistry-of-Materials.jpg)
40. Pure Crystalline Covalent Organic Framework Aerogels
Zhu, D.; Zhu, Y.; Yan, Q.; Liu, F.; Yu, P.; Tseng, C.; Tjahjono, N.; Huang, P.; Rahman, M. M.; Egap, E.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/39.Advanced-Functional-Materials.jpg)
39. Covalent Organic Frameworks for Batteries
Zhu, D.; Xu, G.; Barnes, M.; Zhang, Z.; Zhang, J.; Li, Y.; Khalil, S.; Rahman, M. M.*; Verduzco, R.; Ajayan, P. M.
Advanced Functional Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/38.Energy-and-Environmental-Science.jpg)
38. Seawater Splitting for Hydrogen Production: A Solution Looking for a Problem?
Khan, M.A.; Al-Attas, Tareq; Roy, S.; Rahman, M. M.; Ghaffour, N.; Thangadurai, V.; Larter, S.; Hu, J.; Ajayan, P.M.; Kibria, M.G.
Energy & Environmental Science 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/37.Chemistry-of-Materials.jpg)
37. Rapid, ambient temperature synthesis of imine covalent organic frameworks catalyzed by transition metal nitrates.
Zhu, D.; Zhang, Z.; Li, Y.; Barnes, M.; Khalil, S.; Rahman, M. M.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/36.Journal-of-Materials-Chemistry-A.jpg)
36. Fiber Reinforced Monolithic Supercapacitor with Interdigitated Interfaces
Yuan, F.; Salpekar, D.; Baburaj, A.; Hasan, S.; Putirath, A. B.; Saadi, M.A.S.R.; Robles, F.C.; Robetzazi, H.; Roy, S.; Sun, D.; Kotov, N.A.; Rahman, M. M.*; Ajayan, P. M.
Journal of Materials Chemistry A 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/46.Science-advances-808x1024.jpg)
35. Damage-tolerant 3D Printed Ceramics via Conformal Coating
Sajadi, S. M.; Vásárhelyi, L.; Mousavi, R. Rahmati, A. H.; Kónya, Z.; Kukovecz, A.; Arif, T.; Filleter, T.; Vajtai, R.; Tiwary, C. S.; Rahman, M. M.*, Ajayan, P. M.
Science Advances 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/35.Carbon.gif)
34. Three-dimensional Printing of Complex Graphite StructuresSajadi, S. M.; Enayat, S.; Vásárhelyi, L.; Alabastri, A.; Lou, M.; Sassi, L.M.; Kutana, A.; Bhowmick, S.; Durante, C.; Kukovecz, A.; Puthirath, A. B.; Kónya, Z.; Vajtai, R.; Boul, P.; Tiwary, C. S.; Rahman, M. M.*, Ajayan, P. M.
Carbon 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/34.iScience.gif)
33. Deformation Resilient Cement Structures using 3D Printed Molds
Sajadi, S. M.; Tiwari, C.S.; Rahmati, A. H.; Eichmann, S. L.; Thaemlitz, C. J.; Salpekar, D.; Puthirath, A. B.; Boul, P. J.; Rahman, M. M.*; AshokKumar, M.; Ajayan, P. M.
iScience 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/33.ACS-NANO.jpg)
32. Structural Defects Modulate Electronic and Nanomechanical properties of 2D materials.
Tripathi, M.; Lee, F.; Michail, A.; Anestopoulos, D.; McHugh , J.; Ogilvie, S.; Large, M.; Amorim Graf, A.; Lynch, P.; Parthenios, J.; Papagelis, K.; Roy, S.; Rahman, M. M.; King, A.; Ajayan, P.; Dalton, A.
ACS Nano 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/42.Chemistry-of-Materials.jpg)
31. Transformation of One-Dimensional Linear Polymers into Two-Dimensional Covalent Organic Frameworks Through Sequential Reversible and Irreversible Chemistries
Zhu, D.; Li, X.; Li, Y.; Barnes, M.; Tseng, C.; Khalil, S.; Rahman, M. M.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/31.Carbohydrate-Polymers.jpg)
30. Free-standing SnS/Carbonized Cellulose Film as Durable Anode for Lithium-Ion Batteries.
Yuan, F.; Huang, Y.; Qian, J.; Rahman, M. M.*; Ajayan, P. M.; Sun, D.
Carbohydrate Polymers 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/30.Oxford-Open-Materials-Science.jpeg)
29. Additive Manufacturing of Polymer-based Structures by Extrusion Technologies.
Maguire, A.; Pottackal, N.; Saadi, M.A.S.R.; Rahman, M. M.*; Ajayan, P. M.
Oxford Open Materials Science 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/29.ACS-NANO.jpg)
28. Gadhamshetty, V. Atomic Layers of Graphene for Microbial Corrosion Prevention
Chilkoor, G.; Shrestha, N.; Kutana, A.; Hernández, F. C. R.; Yakobson, B. I.; Meyyappan, M.; Ajayan, P. M.; Rahman, M. M.*;
ACS Nano 2021
2020
![](http://maksudrahman.com/wp-content/uploads/2023/11/28.ACS-NANO.jpg)
27. Hexagonal Boron Nitride for Sulfur Corrosion Inhibition
Chilkoor, G.; Jawaharraj, K.; Vemuri, B. Kutana, A.; Triptahi, M.; Kota, D.; Arif, T.; Filleter, T.; Dalton, A.B.; Yakobson, B.I.; Meyyappan, M.; Rahman, M. M.*, Ajayan, P. M., Gadhamshetty, V.
ACS Nano 2020
![](http://maksudrahman.com/wp-content/uploads/2023/11/27.-ACS-Applied-Materials-and-interfaces.jpg)
26. Reactive 3D Printing of Shape Programmable Liquid Crystal Elastomers.
Barnes, M.; Sajadi, S.M.; Parekh, S.; Rahman, M. M.*; Ajayan, P.M.; Verduzco, R.
ACS Applied Materials & Interfaces 2020
![](http://maksudrahman.com/wp-content/uploads/2023/11/26.Advanced-Materials.jpg)
25. Multifunctional bionanocomposite coatings for perishable fruits
Jung, S.; Cui, Y.; Barnes, M.; Satam, C.; Zhang, S.; Chowdhury, R.; Adumbumkulath, A.; Sahin, O.; Miller, C.; Sajadi, S.M.; Sassi, L.; Ji, Y.; Bennett, M.; Yu, M.; Friguglietti, J.; Merchant, F.; Verduzco, R.; Roy, S.; Vajtai, R.; Meredith, J.C.; Youngblood, J.; Koratkar, N.; Rahman, M. M.*; Ajayan, P.M. Advanced Materials 2020
2019
![](http://maksudrahman.com/wp-content/uploads/2023/11/25.Small_.gif)
24. 3D Printed Tubulanes as Lightweight Hypervelocity Impact Resistant Structures.
Sajadi, S. M.; Woellner, C. F.; Ramesh, P.; Eichmann, S. L.; Sun, Q.; Boul, P. J.; Thaemlitz, C.; Rahman, M. M.; Baughman, R. H.; Galvão, D.S.; Tiwary, C.S.; Ajayan, P.M.
Small 2019
![](http://maksudrahman.com/wp-content/uploads/2023/11/24.Advanced-Functional-Materials.gif)
23. Fiber reinforced layered dielectric nanocomposite
Rahman, M. M.*; Puthirath, A.B.; Adumbumkulath, A.; Tsafack T.; Robatjazi, H.; Barnes, M.; Wang, Z.; Kommandur, S.; Susarla, S.; Sajadi, S.; Salpekar, D.; Yuan, F.; Babu, G.; Nomoto, K.; Islam, SM; Verduzco, R.; Yee, SK; Xing, H.G.; Ajayan, PM.
Advanced Functional Materials 2019
![](http://maksudrahman.com/wp-content/uploads/2023/11/23.Advanced-Engineering-Materials.jpg)
22. Direct Ink Writing of Cement Structures Modified with Nanoscale Additive
Sajadi, S.M.; Boul, P.J.; Thaemlitz, C.; Meiyazhagan, A.K.; Puthirath, A.B.; Tiwary, C.S.; Rahman, M. M.*; Ajayan, P.M.
Advanced Engineering Materials 2019
2018
![](http://maksudrahman.com/wp-content/uploads/2023/11/21.Composities-Science-and-Technology.gif)
21. Advanced green composites from liquid crystalline cellulose fibers and waxy maize starch-based resins
Rahman, M. M.; Netravali, A. N.
Composites Science and Technology 2018
2017
![](http://maksudrahman.com/wp-content/uploads/2023/11/21.Composities-Science-and-Technology.gif)
20. High-performance ‘Green’ Nanocomposite using Aligned Bacterial Cellulose and Soy Protein.
Rahman, M. M.; Netravali, A. N.
Composites Science and Technology 2017
![](http://maksudrahman.com/wp-content/uploads/2023/11/20.Polymer-Composites.gif)
19. ‘Green’ Composite Using bioresins from agro-wastes and modified sisal fibers.
Patil, N.V., Rahman, M. M.; Netravali, A. N.
Polymer Composites 2017
2016
![](http://maksudrahman.com/wp-content/uploads/2023/11/19.-RSC-Advances.jpg)
18. Micro-fibrillated cellulose reinforced eco-friendly polymeric resin from non-edible ‘Jatropha curcus’ seed waste after biodiesel production.
Rahman, M. M.; Netravali, A. N.
RSC Advances 2016
![](http://maksudrahman.com/wp-content/uploads/2023/11/18.ACS-Macro-Letters.jpg)
17. Aligned Bacterial Cellulose Arrays for Composite Material
Rahman, M. M. ; Netravali, A. N.
ACS Macro Letters 2016
![](http://maksudrahman.com/wp-content/uploads/2023/11/16.Applied-Polymer-Science.gif)
16. Bio-inspired “green” nanocomposite using hydroxyapatite synthesized from eggshell waste and soy protein.
Rahman, M. M.; Netravali, A. N.; Tiimob, B. J.; Apalangya, V.; Rangari, V. K.
Journal of Applied Polymer Science 2016
2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/15.-American-Society-For-Composite-Materials.gif)
15. Enhanced Tensile Performance of Epoxy and E-glass/epoxy Composites by Randomly oriented Amino-functionalized MWCNTs at Low Contents
Rahman, M. M.; Hosur, M.; Zainuddin, S.; Jahan, N.; Miller-Smith, E. B.; Jeelani, S.
Journal of Composite Materials 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/14.Composite-Structures.gif)
14. Low Velocity Impact Properties of Carbon Nanofibers Integrated Carbon fiber/epoxy Hybrid Composites Manufactured by OOA–VBO Process
Rahman, M. M.; Hosur, M.; Hsiao, K. T.; Wallace, L.; Jeelani, S.
Composite Structures 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/13.Applied-Polymer.gif)
13. Bio-based Polymeric Resin from Agricultural Waste, Neem (Azadirachta indica) Seed Cake, for Green Composites
Rahman, M. M.; Ho, K.; Netravali, A. N.
Journal of Applied Polymer Science 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/12.Applied-Polymer.jpg)
12. Thermal Stability and Kinetics Analysis of Epoxy Composites Modified with Reactive Polyol Diluent and Multiwalled Carbon Nanotubes
Islam, M. E.; Rahman, M. M.; Hosur, M.; Jeelani, S.
Journal of Applied Polymer Science 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/10.ACS-Sustainable-Chemistry-Engineeering.jpg)
11. Bio-derived “Green” Composite from Soy Protein and Eggshell Nanopowder
Rahman, M. M.; Netravali, A. N.; Tiimob, B. J.; Rangari, V. K.
ACS Sustainable Chemistry and Engineering 2014
2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/10.ACS-Sustainable-Chemistry-Engineeering.jpg)
10. Green Resin from Forestry Waste Residue “Karanja (Pongamia pinnata) Seed Cake” for Biobased Composite Structures
Rahman, M. M.; Netravali, A. N.
ACS Sustainable Chemistry and Engineering 2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/9.Composites.jpg)
9. Fracture Behavior of Epoxy Nanocomposites Modified with Polyol Diluent and Amino-functionalized Multiwalled Carbon Nanotubes: A Loading Rate Study
Jajam, K. C.; Rahman, M. M.; Hosur, M. V.; Tippur, H. V.
Composites Part A: Applied Science and Manufacturing 2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/8.Composite-Structure.gif)
8. Optimization of Mechanical and Thermomechanical Properties of Epoxy and E-glass/epoxy Composites Using NH2-MWCNTs, Acetone Solvent and Combined Dispersion Methods
Zainuddin, S.; Fahim, A.; Arifin, T.; Hosur, M. V.; Rahman, M. M.; Tyson, J. D.; Jeelani, S.
Composite Structures 2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/7.Open-Journal-of-Composite-Materials.jpg)
7. Effect of Carboxyl Functionalized MWCNTs on the Cure Behavior of Epoxy Resin
Jahan, N.; Narteh, A.; Hosur, M.; Rahman, M. M.; Jeelani, S.
Open Journal of Composite Materials 2013
2013
![](http://maksudrahman.com/wp-content/uploads/2023/11/6.Polymers-and-Polymer-Composites-scaled.jpg)
6. Improvement in Mechanical and Thermo-Mechanical Properties of Carbon fiber/Epoxy Composites Using Carboxyl Functionalized Multi-Walled Carbon Nanotubes.
Salam, M. B. A.; Hosur, M. V.; Jahan, N.; Rahman, M. M.; Jeelani, S.
Polymer and Polymer Composites 2013
![](http://maksudrahman.com/wp-content/uploads/2023/11/5.Impact-Engineering.gif)
5. Effects of Amino-functionalized MWCNTs on Ballistic Impact Performance of E-glass/epoxy Composites Using a Spherical Projectile
Rahman, M. M.; Hosur, M.; Zainuddin, S.; Vaidya, U.; Tauhid, A.; Kumar, A.; Trovillion, J.; Jeelani, S.
International Journal of Impact Engineering 2013
![](http://maksudrahman.com/wp-content/uploads/2023/11/03.Composite-Structures.gif)
4. Effect of NH2-MWCNTs on Crosslink Density of Epoxy Matrix and ILSS properties of E-glass/epoxy Composites
Rahman, M. M.; Zainuddin, S.; Hosur, M. V.; Robertson, C. J.; Kumar, A.; Trovillion, J.; Jeelani, S.
Composite Structures 2013
2012
![](http://maksudrahman.com/wp-content/uploads/2023/11/03.Composite-Structures.gif)
3. Improvements in Mechanical and Thermomechanical Properties of E-glass/epoxy Composites Using Amino-functionalized MWCNTs
Rahman, M. M.; Zainuddin, S.; Hosur, M. V.; Malone, J. E.; Salam, M. B. A.; Kumar, A.; Jeelani, S.
Composite Structures 2012
![](http://maksudrahman.com/wp-content/uploads/2023/11/02.Polymer-Testing.gif)
2. Mechanical Characterization of Epoxy Composites Modified with Reactive Polyol Diluent and Randomly oriented Amino-functionalized MWCNTs
Rahman, M. M.; Hosur, M.; Zainuddin, S.; Jajam, K. C.; Tippur, H. V.; Jeelani, S.
Polymer Testing 2012
![](http://maksudrahman.com/wp-content/uploads/2023/11/01.Polymer-Testing.gif)
1. Thermo-mechanical Behavior of Epoxy Composites Modified with Reactive Polyol Diluent and Randomly oriented Amino-functionalized Multiwalled Carbon Nanotubes
Rahman, M. M.; Hosur, M.; Ludwick, A. G.; Zainuddin, S.; Kumar, A.; Trovillion, J.; Jeelani, S.
Polymer Testing 2012
Patents
2023
8. Direct Ink Printing of Multi-material Composite Structures.
Sajadi, S. M.; Boul, P. J.; Tiwary, C.S.; Rahman, M. M.; Ajayan, P. M.; Thaemlitz, C.
US Patent Application No.: 17/575, 177, 2023.
7. Cementing a wellbore using a direct ink printing.
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M.
US Patent Application No.: 17/551, 051, 2023.
6. Shape-memory behavior of epoxy/sliding-ring polymer composites
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M.
US Patent Application No.: 17/550, 653, 2023.
5. Epoxy compositions containing polyrotaxane additives having improved impact strength
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M.
US Patent Application No.: 17/550, 638, 2023.
4. 3D Printed Polyrotaxane Additives and Compositions.
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M. Application No.: 17/550, 631, 2023.
2022
3. Poly-albumen based green coating to enhance shelf life of perishable foods
Rahman, M. M.; JUNG, S.; POTTACKAL, N.; Ajayan, P. M.
US Patent Application No.: US20220007692A1.
2021
2. Additive manufacture-assisted method for making structural elements having controlled failure characteristics
S. M. Sajadi, A. MEIYAZHAGAN, P. Boul, M. Rahman, C. Thaemlitz, P. Ajayan
US Patent Application No.: US20210354366A1
2020
1. Cement-based direct ink for 3D-printing of complex architected structures
Rahman, M. M.; Sajadi, S. M.; Kumar, A.; Boul, P. J.; Thaemlitz, C.; Ajayan, P. M. Cementbased direct ink for 3D-printing of complex architected structures. US Patent Application No.: 16/596, 396, 2020.
Book Chapters
2015
1. ‘Green’ Resins from Plant Sources and Strengthening Mechanisms
Book Chapter in Advanced Green Composites published by Scrivener Publishing
Rahman, M. M.; Netravali, A. N.
Journal Articles
2023
![](http://maksudrahman.com/wp-content/uploads/2023/11/60.Green-Chemistry.jpg)
59. Economic and Environmental Assessment of Asphaltene-derived Carbon Fiber Production
Bari, M.A.A.; Nabil, S.; Saad, S.; Sarkar, R.; Sabiha, S.; Rahman, M. M.; Kibria, Md.
Green Chemistry 2023, 25, 6446-6458.
![](http://maksudrahman.com/wp-content/uploads/2023/11/59.Cell-Reports-Physical-Science.gif)
58. Processing Dynamics of Carbon Nanotube–Epoxy Nanocomposites during 3D Printing
Khater, A.; Saadi, M. A. S. R.; Bhattacharyya, S.; Kutana, A.; Tripathi, M.; Kamble, M.; Song, S.; Lou, M.; Barnes, M.; Meyer, M.; Harikrishnan, V.; Dalton, A. B.; Koratkar, N.; Tiwary, C. S.; Boul, P. J.; Yakobson, B.; Zhu, H.; Ajayan, P. M.; Rahman, M. M.*
Cell Reports Physical Science 2023, 4, 101617.
![](http://maksudrahman.com/wp-content/uploads/2023/11/58.Cell-Reports-Physical-SCience.gif)
57. Functional Wood for Carbon Dioxide Capture
Roy, S.; Philip, F.A.; Oliveira, E.F.; Singh, G.; Joseph, S.; Yadav, R.M.; Adumbumkulath, A.; Hassan, S.; Khater, A.; Vinu, A.; Shimizu, G.; Ajayan, P.M.; Kibria, M.G.; Rahman, M. M.*
Cell Reports Physical Science 2023, 4, 101269.
![](http://maksudrahman.com/wp-content/uploads/2023/11/57.Acs-Nano-scaled.jpg)
56. Graphene as Thinnest Coating on Copper Electrodes in Microbial Methanol Fuel Cells
Islam, J.; Obulisamy, P.K.; Upadhyayula, V.K.K.; Dalton, A.B.; Ajayan, P.M.; Rahman, M. M.*; Tripathi, M.; Sani, R.; Gadhamshetty, V.
ACS Nano 2023, 17, 1, 137-145.
![](http://maksudrahman.com/wp-content/uploads/2023/11/56.MSSP_.jpg)
55. 3D printed metamaterials for Damping Enhancement and Vibration Isolation: Schwarzites
Herkal, S.; Rahman, M. M.*; Nagarajah, S.; Harikrishnan, V, Ajayan, P. M.
Mechanical Systems and Signal Processing 2023, 185, 109819.
2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/55.ACS-Materials-Letters.jpg)
54. Solvent induced incremental pore collapse in two-dimensional covalent organic frameworks
Zhu, D.; Yan, Q.; Zhu, Y.; Ajnsztajn, A.; Rahman, M. M.; Ajayan, P.M.; Verduzco, R.
ACS Materials Letter 2022, 4, 2368-2374.
![](http://maksudrahman.com/wp-content/uploads/2023/11/54.Science-Advance.jpg)
53. Sustainable Valorization of Asphaltene via Flash Joule Heating
Saadi, M.A.S.R.; Advincula, P.A.; Thakur, M.S.H.; Khater, A.; Saad, S.; Zeraati, A.s.; Nabil, S.K.; Zinke, A.; Roy, S.; Lou, M.; Bheemasetti, S.N.; Bari, M.A.A.; Zheng, Y.; Beckham, J.L.; Gadhamshetty, V.; Vashisth, A.; Kibria, M.G.; Tour, J.M.; Ajayan, P.M.; Rahman, M. M.
Science Advances 2022, 8, eadd3555.
![](http://maksudrahman.com/wp-content/uploads/2023/11/52.Chem-Catalyst.gif)
52. Zero-crossover electrochemical CO2 reduction to ethylene with coproduction of valuable chemicals
Khan, M.A.; Nabil, S.K.; Al-Attas, T.; Yasri, N.G..; Roy, S.; Rahman, M. M.; Larter, S.; Ajayan, P.M.; Hu, J.; Kibria, M.G.
Chem Catalysis 2022, 2(8), 2077-2095.
![](http://maksudrahman.com/wp-content/uploads/2023/11/53.Chemical-Science.jpg)
51. Understanding fragility and engineering activation stability in two-dimensional covalent organic frameworks
Zhu, D.; Zhang, J.-J.; Wu, X.; Yan, Q.; Liu, F.; Zhu, Y.; Gao, X.; M. Rahman, M.; I. Yakobson, B.; M. Ajayan, P.; Verduzco, R.
Chemical Science 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/48.ADVANCED-SUSTAINABLE-SYSTEMS.jpg)
50. 3D Printed Materials in Water Treatment Applications
Ghosal, P.; Gupta, B.; Ambekar, R. S.; Rahman, M. M.; Ajayan, P. M.; Aich, N.; Gupta, A. K.; Tiwary, C. S.
Advanced Sustainable Systems 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/50.ADVANCED-MATERIALS.webp)
49. Direct Ink Writing: A 3D Printing Technology for Diverse Materials
Saadi, M. a. S. R.; Maguire, A.; Pottackal, N. T.; Thakur, M. S. H.; Ikram, M. Md.; Hart, A. J.; Ajayan, P. M.; Rahman, M. M.
Advanced Materials 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/51.ACS-OMEGA-scaled.jpg)
48. Oxygen Reduction Reaction with Manganese Oxide Nanospheres in Microbial Fuel Cells
Vemuri, B.; Chilkoor, G.; Dhungana, P.; Islam, J.; Baride, A.; Koratkar, N.; Ajayan, P. M.; Rahman, M. M.; Hoefelmeyer, J. D.; Gadhamshetty, V.
ACS Omega 2022
![](http://maksudrahman.com/wp-content/uploads/2023/11/49.Carbon.gif)
47. Transformation of petroleum asphaltenes to carbon fibers
Saad, S.; Zeraati, A. S.; Roy, S.; Shahriar Rahman Saadi, M. A.; Radović, J. R.; Rajeev, A.; Miller, K. A.; Bhattacharyya, S.; Larter, S. R.; Natale, G.; Sundararaj, U.; Ajayan, P. M.; Rahman, M. M.; Kibria, M. G.
Carbon 2022
2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/43.Advanced-Materials.gif)
45. Corrosion Resistance of Sulfur-Selenium Alloy Coatings
Susarla, S.; Chilkoor, G.; Cui, Y.; Arif, T.; Tsafack, T.; Puthirath, A.B.; Sudeep, P. M.; Kalimuthu, J. R.; Hassan, A.; Castro-Pardo, S.; Barnes, M.; Verduzco, R.; Filleter, T.; Koratkar, N.; Gadhamshetty, V.; Rahman, M. M.*; Ajayan, P. M.
Advanced Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/43.Advanced-Materials.gif)
44 .Structure, Properties and Applications of Two‐Dimensional Hexagonal Boron Nitride
S. Roy, X. Zhang, A. B. Puthirath, A. Meiyazhagan, S. Bhattacharyya, M. M. Rahman, G. Babu, S. Susarla, S. K. Saju, M. K. Tran, L. M. Sassi, M. a. S. R. Saadi, J. Lai, O. Sahin, S. M. Sajadi, B. Dharmarajan, D. Salpekar, N. Chakingal, A. Baburaj, X. Shuai, A. Adumbumkulath, K. A. Miller, J. M. Gayle, A. Ajnsztajn, T. Prasankumar, V. V. J. Harikrishnan, V. Ojha, H. Kannan, A. Z. Khater, Z. Zhu, S. A. Iyengar, P. A. da S. Autreto, E. F. Oliveira, G. Gao, A. G. Birdwell, M. R. Neupane, T. G. Ivanov, J. Taha-Tijerina, R. M. Yadav, S. Arepalli, R. Vajtai, P. M. Ajayan
Advanced Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/45.Small_.gif)
43. Graphene Confers Ultralow Friction on Nanogear Cogs
A. Mescola, G. Paolicelli, S. P. Ogilvie, R. Guarino, J. G. McHugh, A. Rota, E. Iacob, E. Gnecco, S. Valeri, N. M. Pugno, V. Gadhamshetty, M. M. Rahman, P. Ajayan, A. B. Dalton, M. Tripathi
Small 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/43.Advanced-Materials.gif)
42. Corrosion Resistance of Sulfur–Selenium Alloy Coatings
Susarla, S.; Chilkoor, G.; Kalimuthu, J. R.; Saadi, M. a. S. R.; Cui, Y.; Arif, T.; Tsafack, T.; Puthirath, A. B.; Sigdel, P.; Jasthi, B.; Sudeep, P. M.; Hu, L.; Hassan, A.; Castro-Pardo, S.; Barnes, M.; Roy, S.; Verduzco, R.; Kibria, M. G.; Filleter, T.; Lin, H.; Solares, S. D.; Koratkar, N.; Gadhamshetty, V.; Rahman, M. M.; Ajayan, P. M.
Advanced Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/40.Chemistry-of-Materials.jpg)
41. Patterning, Transfer, and Tensile Testing of Covalent Organic Frameworks Films with Nanoscale Thickness
Zhu, D.; Hu, Z.; Rogers, T.; Barnes, M.; Tseng, C.; Mei, H.; Sassi, L.; Zhang, Z.; Rahman, M. M.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/40.Chemistry-of-Materials.jpg)
40. Pure Crystalline Covalent Organic Framework Aerogels
Zhu, D.; Zhu, Y.; Yan, Q.; Liu, F.; Yu, P.; Tseng, C.; Tjahjono, N.; Huang, P.; Rahman, M. M.; Egap, E.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/39.Advanced-Functional-Materials.jpg)
39. Covalent Organic Frameworks for Batteries
Zhu, D.; Xu, G.; Barnes, M.; Zhang, Z.; Zhang, J.; Li, Y.; Khalil, S.; Rahman, M. M.*; Verduzco, R.; Ajayan, P. M.
Advanced Functional Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/38.Energy-and-Environmental-Science.jpg)
38. Seawater Splitting for Hydrogen Production: A Solution Looking for a Problem?
Khan, M.A.; Al-Attas, Tareq; Roy, S.; Rahman, M. M.; Ghaffour, N.; Thangadurai, V.; Larter, S.; Hu, J.; Ajayan, P.M.; Kibria, M.G.
Energy & Environmental Science 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/37.Chemistry-of-Materials.jpg)
37. Rapid, ambient temperature synthesis of imine covalent organic frameworks catalyzed by transition metal nitrates.
Zhu, D.; Zhang, Z.; Li, Y.; Barnes, M.; Khalil, S.; Rahman, M. M.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/36.Journal-of-Materials-Chemistry-A.jpg)
36. Fiber Reinforced Monolithic Supercapacitor with Interdigitated Interfaces
Yuan, F.; Salpekar, D.; Baburaj, A.; Hasan, S.; Putirath, A. B.; Saadi, M.A.S.R.; Robles, F.C.; Robetzazi, H.; Roy, S.; Sun, D.; Kotov, N.A.; Rahman, M. M.*; Ajayan, P. M.
Journal of Materials Chemistry A 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/46.Science-advances-808x1024.jpg)
35. Damage-tolerant 3D Printed Ceramics via Conformal Coating
Sajadi, S. M.; Vásárhelyi, L.; Mousavi, R. Rahmati, A. H.; Kónya, Z.; Kukovecz, A.; Arif, T.; Filleter, T.; Vajtai, R.; Tiwary, C. S.; Rahman, M. M.*, Ajayan, P. M.
Science Advances 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/35.Carbon.gif)
34. Three-dimensional Printing of Complex Graphite StructuresSajadi, S. M.; Enayat, S.; Vásárhelyi, L.; Alabastri, A.; Lou, M.; Sassi, L.M.; Kutana, A.; Bhowmick, S.; Durante, C.; Kukovecz, A.; Puthirath, A. B.; Kónya, Z.; Vajtai, R.; Boul, P.; Tiwary, C. S.; Rahman, M. M.*, Ajayan, P. M.
Carbon 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/34.iScience.gif)
33. Deformation Resilient Cement Structures using 3D Printed Molds
Sajadi, S. M.; Tiwari, C.S.; Rahmati, A. H.; Eichmann, S. L.; Thaemlitz, C. J.; Salpekar, D.; Puthirath, A. B.; Boul, P. J.; Rahman, M. M.*; AshokKumar, M.; Ajayan, P. M.
iScience 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/33.ACS-NANO.jpg)
32. Structural Defects Modulate Electronic and Nanomechanical properties of 2D materials.
Tripathi, M.; Lee, F.; Michail, A.; Anestopoulos, D.; McHugh , J.; Ogilvie, S.; Large, M.; Amorim Graf, A.; Lynch, P.; Parthenios, J.; Papagelis, K.; Roy, S.; Rahman, M. M.; King, A.; Ajayan, P.; Dalton, A.
ACS Nano 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/42.Chemistry-of-Materials.jpg)
31. Transformation of One-Dimensional Linear Polymers into Two-Dimensional Covalent Organic Frameworks Through Sequential Reversible and Irreversible Chemistries
Zhu, D.; Li, X.; Li, Y.; Barnes, M.; Tseng, C.; Khalil, S.; Rahman, M. M.; Ajayan, P. M.; Verduzco, R.
Chemistry of Materials 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/31.Carbohydrate-Polymers.jpg)
30. Free-standing SnS/Carbonized Cellulose Film as Durable Anode for Lithium-Ion Batteries.
Yuan, F.; Huang, Y.; Qian, J.; Rahman, M. M.*; Ajayan, P. M.; Sun, D.
Carbohydrate Polymers 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/30.Oxford-Open-Materials-Science.jpeg)
29. Additive Manufacturing of Polymer-based Structures by Extrusion Technologies.
Maguire, A.; Pottackal, N.; Saadi, M.A.S.R.; Rahman, M. M.*; Ajayan, P. M.
Oxford Open Materials Science 2021
![](http://maksudrahman.com/wp-content/uploads/2023/11/29.ACS-NANO.jpg)
28. Gadhamshetty, V. Atomic Layers of Graphene for Microbial Corrosion Prevention
Chilkoor, G.; Shrestha, N.; Kutana, A.; Hernández, F. C. R.; Yakobson, B. I.; Meyyappan, M.; Ajayan, P. M.; Rahman, M. M.*;
ACS Nano 2021
2020
![](http://maksudrahman.com/wp-content/uploads/2023/11/28.ACS-NANO.jpg)
27. Hexagonal Boron Nitride for Sulfur Corrosion Inhibition
Chilkoor, G.; Jawaharraj, K.; Vemuri, B. Kutana, A.; Triptahi, M.; Kota, D.; Arif, T.; Filleter, T.; Dalton, A.B.; Yakobson, B.I.; Meyyappan, M.; Rahman, M. M.*, Ajayan, P. M., Gadhamshetty, V.
ACS Nano 2020
![](http://maksudrahman.com/wp-content/uploads/2023/11/27.-ACS-Applied-Materials-and-interfaces.jpg)
26. Reactive 3D Printing of Shape Programmable Liquid Crystal Elastomers.
Barnes, M.; Sajadi, S.M.; Parekh, S.; Rahman, M. M.*; Ajayan, P.M.; Verduzco, R.
ACS Applied Materials & Interfaces 2020
![](http://maksudrahman.com/wp-content/uploads/2023/11/26.Advanced-Materials.jpg)
25. Multifunctional bionanocomposite coatings for perishable fruits
Jung, S.; Cui, Y.; Barnes, M.; Satam, C.; Zhang, S.; Chowdhury, R.; Adumbumkulath, A.; Sahin, O.; Miller, C.; Sajadi, S.M.; Sassi, L.; Ji, Y.; Bennett, M.; Yu, M.; Friguglietti, J.; Merchant, F.; Verduzco, R.; Roy, S.; Vajtai, R.; Meredith, J.C.; Youngblood, J.; Koratkar, N.; Rahman, M. M.*; Ajayan, P.M. Advanced Materials 2020
2019
![](http://maksudrahman.com/wp-content/uploads/2023/11/25.Small_.gif)
24. 3D Printed Tubulanes as Lightweight Hypervelocity Impact Resistant Structures.
Sajadi, S. M.; Woellner, C. F.; Ramesh, P.; Eichmann, S. L.; Sun, Q.; Boul, P. J.; Thaemlitz, C.; Rahman, M. M.; Baughman, R. H.; Galvão, D.S.; Tiwary, C.S.; Ajayan, P.M.
Small 2019
![](http://maksudrahman.com/wp-content/uploads/2023/11/24.Advanced-Functional-Materials.gif)
23. Fiber reinforced layered dielectric nanocomposite
Rahman, M. M.*; Puthirath, A.B.; Adumbumkulath, A.; Tsafack T.; Robatjazi, H.; Barnes, M.; Wang, Z.; Kommandur, S.; Susarla, S.; Sajadi, S.; Salpekar, D.; Yuan, F.; Babu, G.; Nomoto, K.; Islam, SM; Verduzco, R.; Yee, SK; Xing, H.G.; Ajayan, PM.
Advanced Functional Materials 2019
![](http://maksudrahman.com/wp-content/uploads/2023/11/23.Advanced-Engineering-Materials.jpg)
22. Direct Ink Writing of Cement Structures Modified with Nanoscale Additive
Sajadi, S.M.; Boul, P.J.; Thaemlitz, C.; Meiyazhagan, A.K.; Puthirath, A.B.; Tiwary, C.S.; Rahman, M. M.*; Ajayan, P.M.
Advanced Engineering Materials 2019
2018
![](http://maksudrahman.com/wp-content/uploads/2023/11/21.Composities-Science-and-Technology.gif)
21. Advanced green composites from liquid crystalline cellulose fibers and waxy maize starch-based resins
Rahman, M. M.; Netravali, A. N.
Composites Science and Technology 2018
2017
![](http://maksudrahman.com/wp-content/uploads/2023/11/21.Composities-Science-and-Technology.gif)
20. High-performance ‘Green’ Nanocomposite using Aligned Bacterial Cellulose and Soy Protein.
Rahman, M. M.; Netravali, A. N.
Composites Science and Technology 2017
![](http://maksudrahman.com/wp-content/uploads/2023/11/20.Polymer-Composites.gif)
19. ‘Green’ Composite Using bioresins from agro-wastes and modified sisal fibers.
Patil, N.V., Rahman, M. M.; Netravali, A. N.
Polymer Composites 2017
2016
![](http://maksudrahman.com/wp-content/uploads/2023/11/19.-RSC-Advances.jpg)
18. Micro-fibrillated cellulose reinforced eco-friendly polymeric resin from non-edible ‘Jatropha curcus’ seed waste after biodiesel production.
Rahman, M. M.; Netravali, A. N.
RSC Advances 2016
![](http://maksudrahman.com/wp-content/uploads/2023/11/18.ACS-Macro-Letters.jpg)
17. Aligned Bacterial Cellulose Arrays for Composite Material
Rahman, M. M. ; Netravali, A. N.
ACS Macro Letters 2016
![](http://maksudrahman.com/wp-content/uploads/2023/11/16.Applied-Polymer-Science.gif)
16. Bio-inspired “green” nanocomposite using hydroxyapatite synthesized from eggshell waste and soy protein.
Rahman, M. M.; Netravali, A. N.; Tiimob, B. J.; Apalangya, V.; Rangari, V. K.
Journal of Applied Polymer Science 2016
2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/15.-American-Society-For-Composite-Materials.gif)
15. Enhanced Tensile Performance of Epoxy and E-glass/epoxy Composites by Randomly oriented Amino-functionalized MWCNTs at Low Contents
Rahman, M. M.; Hosur, M.; Zainuddin, S.; Jahan, N.; Miller-Smith, E. B.; Jeelani, S.
Journal of Composite Materials 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/14.Composite-Structures.gif)
14. Low Velocity Impact Properties of Carbon Nanofibers Integrated Carbon fiber/epoxy Hybrid Composites Manufactured by OOA–VBO Process
Rahman, M. M.; Hosur, M.; Hsiao, K. T.; Wallace, L.; Jeelani, S.
Composite Structures 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/13.Applied-Polymer.gif)
13. Bio-based Polymeric Resin from Agricultural Waste, Neem (Azadirachta indica) Seed Cake, for Green Composites
Rahman, M. M.; Ho, K.; Netravali, A. N.
Journal of Applied Polymer Science 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/12.Applied-Polymer.jpg)
12. Thermal Stability and Kinetics Analysis of Epoxy Composites Modified with Reactive Polyol Diluent and Multiwalled Carbon Nanotubes
Islam, M. E.; Rahman, M. M.; Hosur, M.; Jeelani, S.
Journal of Applied Polymer Science 2015
![](http://maksudrahman.com/wp-content/uploads/2023/11/10.ACS-Sustainable-Chemistry-Engineeering.jpg)
11. Bio-derived “Green” Composite from Soy Protein and Eggshell Nanopowder
Rahman, M. M.; Netravali, A. N.; Tiimob, B. J.; Rangari, V. K.
ACS Sustainable Chemistry and Engineering 2014
2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/10.ACS-Sustainable-Chemistry-Engineeering.jpg)
10. Green Resin from Forestry Waste Residue “Karanja (Pongamia pinnata) Seed Cake” for Biobased Composite Structures
Rahman, M. M.; Netravali, A. N.
ACS Sustainable Chemistry and Engineering 2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/9.Composites.jpg)
9. Fracture Behavior of Epoxy Nanocomposites Modified with Polyol Diluent and Amino-functionalized Multiwalled Carbon Nanotubes: A Loading Rate Study
Jajam, K. C.; Rahman, M. M.; Hosur, M. V.; Tippur, H. V.
Composites Part A: Applied Science and Manufacturing 2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/8.Composite-Structure.gif)
8. Optimization of Mechanical and Thermomechanical Properties of Epoxy and E-glass/epoxy Composites Using NH2-MWCNTs, Acetone Solvent and Combined Dispersion Methods
Zainuddin, S.; Fahim, A.; Arifin, T.; Hosur, M. V.; Rahman, M. M.; Tyson, J. D.; Jeelani, S.
Composite Structures 2014
![](http://maksudrahman.com/wp-content/uploads/2023/11/7.Open-Journal-of-Composite-Materials.jpg)
7. Effect of Carboxyl Functionalized MWCNTs on the Cure Behavior of Epoxy Resin
Jahan, N.; Narteh, A.; Hosur, M.; Rahman, M. M.; Jeelani, S.
Open Journal of Composite Materials 2013
2013
![](http://maksudrahman.com/wp-content/uploads/2023/11/6.Polymers-and-Polymer-Composites-scaled.jpg)
6. Improvement in Mechanical and Thermo-Mechanical Properties of Carbon fiber/Epoxy Composites Using Carboxyl Functionalized Multi-Walled Carbon Nanotubes.
Salam, M. B. A.; Hosur, M. V.; Jahan, N.; Rahman, M. M.; Jeelani, S.
Polymer and Polymer Composites 2013
![](http://maksudrahman.com/wp-content/uploads/2023/11/5.Impact-Engineering.gif)
5. Effects of Amino-functionalized MWCNTs on Ballistic Impact Performance of E-glass/epoxy Composites Using a Spherical Projectile
Rahman, M. M.; Hosur, M.; Zainuddin, S.; Vaidya, U.; Tauhid, A.; Kumar, A.; Trovillion, J.; Jeelani, S.
International Journal of Impact Engineering 2013
![](http://maksudrahman.com/wp-content/uploads/2023/11/03.Composite-Structures.gif)
4. Effect of NH2-MWCNTs on Crosslink Density of Epoxy Matrix and ILSS properties of E-glass/epoxy Composites
Rahman, M. M.; Zainuddin, S.; Hosur, M. V.; Robertson, C. J.; Kumar, A.; Trovillion, J.; Jeelani, S.
Composite Structures 2013
2012
![](http://maksudrahman.com/wp-content/uploads/2023/11/03.Composite-Structures.gif)
3. Improvements in Mechanical and Thermomechanical Properties of E-glass/epoxy Composites Using Amino-functionalized MWCNTs
Rahman, M. M.; Zainuddin, S.; Hosur, M. V.; Malone, J. E.; Salam, M. B. A.; Kumar, A.; Jeelani, S.
Composite Structures 2012
![](http://maksudrahman.com/wp-content/uploads/2023/11/02.Polymer-Testing.gif)
2. Mechanical Characterization of Epoxy Composites Modified with Reactive Polyol Diluent and Randomly oriented Amino-functionalized MWCNTs
Rahman, M. M.; Hosur, M.; Zainuddin, S.; Jajam, K. C.; Tippur, H. V.; Jeelani, S.
Polymer Testing 2012
![](http://maksudrahman.com/wp-content/uploads/2023/11/01.Polymer-Testing.gif)
1. Thermo-mechanical Behavior of Epoxy Composites Modified with Reactive Polyol Diluent and Randomly oriented Amino-functionalized Multiwalled Carbon Nanotubes
Rahman, M. M.; Hosur, M.; Ludwick, A. G.; Zainuddin, S.; Kumar, A.; Trovillion, J.; Jeelani, S.
Polymer Testing 2012
Patents
2023
8. Direct Ink Printing of Multi-material Composite Structures.
Sajadi, S. M.; Boul, P. J.; Tiwary, C.S.; Rahman, M. M.; Ajayan, P. M.; Thaemlitz, C.
US Patent Application No.: 17/575, 177, 2023.
7. Cementing a wellbore using a direct ink printing.
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M.
US Patent Application No.: 17/551, 051, 2023.
6. Shape-memory behavior of epoxy/sliding-ring polymer composites
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M.
US Patent Application No.: 17/550, 653, 2023.
5. Epoxy compositions containing polyrotaxane additives having improved impact strength
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M.
US Patent Application No.: 17/550, 638, 2023.
4. 3D Printed Polyrotaxane Additives and Compositions.
Patel, H. A.; Khater, A.; Boul, P. J.; Ajayan, P. M.; Rahman, M. M. Application No.: 17/550, 631, 2023.
2022
3. Poly-albumen based green coating to enhance shelf life of perishable foods
Rahman, M. M.; JUNG, S.; POTTACKAL, N.; Ajayan, P. M.
US Patent Application No.: US20220007692A1.
2021
2. Additive manufacture-assisted method for making structural elements having controlled failure characteristics
S. M. Sajadi, A. MEIYAZHAGAN, P. Boul, M. Rahman, C. Thaemlitz, P. Ajayan
US Patent Application No.: US20210354366A1
2020
1. Cement-based direct ink for 3D-printing of complex architected structures
Rahman, M. M.; Sajadi, S. M.; Kumar, A.; Boul, P. J.; Thaemlitz, C.; Ajayan, P. M. Cementbased direct ink for 3D-printing of complex architected structures. US Patent Application No.: 16/596, 396, 2020.
Book Chapters
2015
1. ‘Green’ Resins from Plant Sources and Strengthening Mechanisms
Book Chapter in Advanced Green Composites published by Scrivener Publishing
Rahman, M. M.; Netravali, A. N.