23. Rahman, MS., Zhu, Z., Abadie, NB., Pillai, K., Reyes, A., McKinley, L., Bielss, CG., Teng, S., Zhao, J., Sayenko, DG., Tian, L.* "Soft, skin-conformal electronic interfaces for multimodal biosignal monitoring and transcutaneous stimulation", ACS Appl. Mater. Interfaces., 2026.
22. Garg, M., Guo, H., Namkoong, M., Zhanov, E., Malone, C., Rahman, MS., … Tian, L.* "Ultrasound-enabled refreshable electrochemical biosensors for cardiac biomarker monitoring" Biosens. Bioelectron., 2025.
21. Rahman MS., Shon, A., Joseph, R., Pavlov, A., Stefanov, A., Namkoong, M., Guo, H., Bui, D., Master, R., Sharma, A., Lee, J., Rivas, M., Elati, A., Hall, YJ., Zhao, F., Park, H., Hook, MA., Tian, L.*, Soft, stretchable conductive hydrogels for high-performance electronic implants, Sci. Adv., 2025.
media coverage: 9 news stories from 9 outlets
20. Nitai, AS., Chowdhury, T., Inam, MN., Rahman, MS., Mondal, MIH., Johir, MAH., Hessel, Volker., Fattah, IMR., Kalam, MA., Suwaileh, WA., Zhou, J., Zargar, M., Ahmed, MB* “Carbon fiber and carbon fiber composites - creating defects for superior material properties”, Adv. Compos. Hybrid Mater., 2024.
19. Garg, M., Guo, H., Maclam, E., Zhanov, E., Samudrala, S., Pavlov, A., Rahman, MS., Namkoong, M., Tian, L* “A molecularly imprinted wearable sensor with paper microfluidics for real-time sweat biomarker analysis,” ACS Appl. Mater. Interfaces., 2024.
18. Mondal, MIH.†, Chakraborty, SC.†, Rahman, MS.†, Marjuban, SMK., Ahmed, F., Zhou, JL.*, Ahmed, MB., Zargar, M, “Biosorbents prepared from rice husk and shrimp shell for effective removal of heavy metals and reactive dyes in water” Environ. Pollut., 2024.
17. Kang, DH.†, Wang, S.†, Goh, MC.†, Park, J., Na, H., Lee, WJ., Kim, Y., Rahman, MS., Tae, G.*, Yoon, MH*, “Synthesis of superabsorbent hydrogels with predefined geometries and controlled swelling properties for versatile 3D cell culture scaffolds”, ACS Appl. Mater. Interfaces., 2024.
16. Garg, M.*, Parihar, A.*, Rahman, MS, “Advanced and personalized healthcare through integrated wearable sensors (versatile),” Mater. Adv., 2024.
15. Hoque, M.†, Alam, M.†, Wang, S.†, Zaman, JU.†, Rahman, MS.†, Johir, MAH., Tian, L., Choi, JG., Ahmed, MB.*, Yoon, MH*, “Interaction chemistry of functional groups for natural biopolymer-based hydrogel design,” Mater. Sci. Eng. R Rep., 2023.
14. Zavareh, A.†, Tran, B.†, Orred, C., Rhodes, S., Rahman, MS., Namkoong, M., Lee, R., Carlisle, C., Rosas, M., Pavlov, A., Chen, I., Schilling, G., Smith, M., Masood, F., Hanks, J.*, Tian, L*, “Soft wearable thermal devices integrated with machine learning,” Adv. Mater. Technol., 2023.
13. Namkoong, M., Baskar, B., Singh, L., Guo, H., McMurray, J., Branan, K., Rahman, MS., Hsiao, CT., Kuriakose, J., Hernandez, J., Arikan, AA., Garza-Rivera, LE., Coté, GL., Tian, L*, “Add-on soft electronic interfaces for continuous cuffless blood pressure monitoring,” Adv. Mater. Technol., 2023.
12. Marjuban, SMH., Rahman, M., Duza, SS., Ahmed, MB., Patel, DK.*, Rahman, MS.*, Lozano, K, “Recent advances in centrifugal spinning and their applications in tissue engineering,” Polymers, 2023.
11. Ahmed, MB.*, Alom, J., Hasan, MS., Asaduzzaman, M., Rahman, MS., Hossen, R., Johir, MAS., Alam, MT., Zhou, JL., Zhu, Y., Zargar, M*, “General doping chemistry of carbon materials,” ChemNanoMat, 2022.
10. Namkoong, M., Guo, H., Rahman, MS., Wang, D., Pfeil, CJ., Hager, S., Tian, L*, “Moldable and transferrable conductive nanocomposites for epidermal electronics,” npj flex. electron., 2022.
9. Mogera, U.†, Guo, H.†, Namkoong, M., Rahman, MS., Nguyen, T., Tian, L*, “Wearable plasmonic paper-based microfluidics for continuous sweat analysis,” Sci. Adv., 2022.
8. Nam, S.*, Selling, GW., Hillyer, MB., Condon, BD., Rahman, MS., Chang, SC, “Brown cotton fibers self-produce ag nanoparticles for regenerating their antimicrobial surfaces,” ACS Appl. Nano Mater., 2021.
7. Ahmed, MB.†, Rahman, MS.†, Alom, J.†, Hasan, MS.†, Johir, MAH., Mondal, MAH., Lee, DY., Park, J., Zhou, JL.*, Yoon, MY*, “Microplastic particles in the aquatic environment: a systematic review,” Sci. Total Environ., 2021.
6. Rahman, MS.†*, Hasan, MS.†, Nitai, AS.†, Nam, S., Karmakar, AK., Ahsan, MS., Shiddiky, MJA., Ahmed, MB*, “Recent developments of carboxymethyl cellulose,” Polymers, 2021.
5. Rahman, MS., Mondal, MIH., Yeasmin, MS., Sayeed, MA, Hossain, MA., Ahmed, MB*, “Conversion of lignocellulosic corn agro-waste into cellulose derivative and its potential application as pharmaceutical excipient,” Processes, 2020.
4. Khandaker, T., Hossain, MS., Dhar, PK., Rahman, MS., Hossain, MA.*, Ahmed MB*, “Efficacies of carbon-based adsorbents for carbon dioxide capture,” Processes, 2020.
3. Ahmed, MB.*, Alam, MM., Zhou, JL., Xu, B., Johir, MAH., Karmakar, AK., Rahman, MS., Hasan, J., ATMK., Hasan, Moni, MA, “Advanced treatment technologies efficacies and mechanism of per- and poly-fluoroalkyl substances removal from water,” Process Saf. Environ. Prot., 2020.
2. Alam, MM., Hossain, MA., Hossain, MD., Johir, MAH., Hossain, MJ., Rahman, MS., Zhou, JL., Hasan, ATMK., Karmakar, AK. and Ahmed, MB*, “The potentiality of rice husk-derived activated carbon: from synthesis to application,” Processes, 2020.
1. Mondal, MIH.*, Yeasmin, MS., and Rahman, MS, “Preparation of food grade carboxymethyl cellulose from corn husk agrowaste,” Int. J. Biol. Macromol., 2015.