Zeeshan Ahmad
Affiliations: | 2015- | Mechanical Engineering | Carnegie Mellon University, Pittsburgh, PA |
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Publications
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Zhu S, Hong Z, Ahmad Z, et al. (2023) Localized Recrystallization of a Lithium-Metal Anode during Fast Stripping in High-Activity Liquid Electrolytes. Acs Applied Materials & Interfaces. 15: 6639-6646 |
Ahmad Z, Hong Z, Viswanathan V. (2020) Design rules for liquid crystalline electrolytes for enabling dendrite-free lithium metal batteries. Proceedings of the National Academy of Sciences of the United States of America |
Ali R, Mehta P, Kyriaki Monou P, et al. (2020) Electrospinning/Electrospraying coatings for metal microneedles: a design of experiments (DOE) and Quality by Design (QbD) approach. European Journal of Pharmaceutics and Biopharmaceutics : Official Journal of Arbeitsgemeinschaft Fur Pharmazeutische Verfahrenstechnik E.V |
Arshad MS, Zafar S, Tehreem Zahra A, et al. (2020) Fabrication and characterization of self-applicating Heparin sodium microneedle patches. Journal of Drug Targeting. 1-22 |
Alyassin Y, Sayed EG, Mehta P, et al. (2020) Application of mesoporous silica nanoparticles as drug delivery carriers for chemotherapeutic agents. Drug Discovery Today |
Chachlioutaki K, Tzimtzimis EK, Tzetzis D, et al. (2020) Electrospun Orodispersible Films of Isoniazid for Pediatric Tuberculosis Treatment. Pharmaceutics. 12 |
Fu C, Venturi V, Kim J, et al. (2020) Universal chemomechanical design rules for solid-ion conductors to prevent dendrite formation in lithium metal batteries. Nature Materials |
Zhu LF, Chen X, Ahmad Z, et al. (2020) A core-shell multi-drug platform to improve gastrointestinal tract microbial health using 3D printing. Biofabrication |
Wu S, Ahmad Z, Li JS, et al. (2020) Fabrication of flexible composite drug films via foldable linkages using electrohydrodynamic printing. Materials Science & Engineering. C, Materials For Biological Applications. 108: 110393 |
Venturi V, Parks HL, Ahmad Z, et al. (2020) Machine learning enabled discovery of application dependent design principles for two-dimensional materials Arxiv: Materials Science. 1: 35015 |