Amiri, Ahmad individual record
Visiting Assistant Professor

Dr. Amiri's current research focuses on energy materials, nanomaterials (specifically, 2D Materials), structural materials, and water treatments.

education and training
selected publications
Academic Articles85
  • Rafieerad, A., Amiri, A., Yan, W., Eshghi, H., & Dhingra, S. (2022). Conversion of 2D MXene to Multi-Low-Dimensional GerMXene Superlattice Heterostructure.. Adv Funct Mater. (10), 2108495.
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  • Asif, A., Amiri, A., Jun, H. J., & Polycarpou, A. A. (2022). Impact of Ionic Liquid Additives and Inorganic Fullerene-Like Tungsten Disulfide on Friction and Wear under Aqueous Environments.. Langmuir. 38(25), 7720-7732.
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  • Amiri, A., Vaught, L., Naraghi, M., & Polycarpou, A. A. (2022). Multifunctional quasi-solid-state zinc-ion hybrid supercapacitors beyond state-of-the-art structural energy storage. Materials Today Physics. 24, 100654-100654.
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  • Amiri, A., Naraghi, M., & Polycarpou, A. A. (2022). Zinc-ion hybrid supercapacitors with ultrahigh areal and gravimetric energy densities and long cycling life. Journal of Energy Chemistry. 70, 480-491.
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  • Amiri, A., Swart, E. N., & Polycarpou, A. A. (2021). Recent advances in electrochemically-efficient materials for zinc-ion hybrid supercapacitors. Renewable and Sustainable Energy Reviews. 148, 111288-111288.
  • Amiri, A., Zare-Zardini, H., Shanbedi, M., Kazi, S. N., Taheri-Kafrani, A., Chew, B. T., & Zarrabi, A. (2016). Microbial toxicity of different functional groups-treated carbon nanotubes. Surface Chemistry of Nanobiomaterials. 33-70. Elsevier.
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  • Amiri, A., & Cavalli, M. N. (2013). Experimental Investigation of Fatigue Behavior of Carbon Fiber Composites Using Fully Reversed Four Point Bending Test. Topics in Modal Analysis I, Volume 5. Composite Materials and Joining Technologies for Composites, Volume 7. 131-137. Springer New York.
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Conference Papers1
  • Oon, C. S., Yew, S. N., Chew, B. T., Newaz, K., Al-Shamma'a, A., Shaw, A., & Amiri, A. (2015). Numerical simulation of heat transfer to separation tio2/water nanofluids flow in an asymmetric abrupt expansion. EPJ Web of Conferences. 92, 02056-02056.
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