Project

Ballistic molecular transport through two-dimensional channels

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Project

Size effect in ion transport through angstrom-scale slits

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Project

Multi-porous Co3O4 nanoflakes@ sponge-like few-layer partially reduced graphene oxide hybrids: towards highly stable asymmetric supercapacitors

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Project

Scalable and efficient separation of hydrogen isotopes using graphene-based electrochemical pumping

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Project

Molecular transport through capillaries made with atomic-scale precision

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Project

Selecting Support Layer for Electrodeposited Efficient Cobalt Oxide/hydroxide Nanoflakes to Split Water

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Publications

Anomalously low dielectric constant of confined water By L. Fumagalli, A. Esfandiar, R. Fabregas, S. Hu, P. Ares, A. Janardanan, Q. Yang, B. Radha, T. Taniguchi, K. Watanabe, G. Gomila, K. S. Novoselov, A. K. Geim Science22 Jun 2018 : 1339-1342

Ballistic molecular transport through two-dimensional channels, A. Keerthi, A. K. Geim, A. Janardanan, A. P. Rooney, A. Esfandiar, S. Hu, S. A. Dar, I. V. Grigorieva, S. J. Haigh, F. C. Wang, B. Radha, Nature 558,420-424 (2018)

Size effect in ion transport through angstrom-scale slits, A Esfandiar, B Radha, FC Wang, Q Yang, S Hu, S Garaj, RR Nair, AK Geim, K Gopinadhan, Science, 358. arXiv preprint arXiv:1709.03928

Multi-porous Co3O4 nanoflakes@ sponge-like few-layer partially reduced graphene oxide hybrids: towards highly stable asymmetric supercapacitors, Mohammad Qorbani, Tsu-chin Chou, Yi-Hsin Lee, Satyanarayana Samireddi, Naimeh Naseri, Abhijit Ganguly, Ali Esfandiar, Chen-Hao Wang, Li-Chyong Chen, Kuei-Hsien Chen, Alireza Z Moshfegh, Journal of Materials Chemistry A