Srimanta Pakhira
Affiliations: | Italian Institute of Technology, Genoa, United States |
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Zapata-Escobar AD, Pakhira S, Barroso-Flores J, et al. (2023) Relativistic quantum calculations to understand the contribution of f-type atomic orbitals and chemical bonding of actinides with organic ligands. Physical Chemistry Chemical Physics : Pccp. 25: 5592-5601 |
Dharmarwardana M, Pakhira S, Welch RP, et al. (2021) Rapidly Reversible Organic Crystalline Switch for Conversion of Heat into Mechanical Energy. Journal of the American Chemical Society |
Pradhan NR, Garcia C, Lucking MC, et al. (2019) Raman and electrical transport properties of few-layered arsenic-doped black phosphorus. Nanoscale |
Pakhira S, Mendoza-Cortes JL. (2019) Intercalation of first row transition metals inside covalent-organic frameworks (COFs): a strategy to fine tune the electronic properties of porous crystalline materials. Physical Chemistry Chemical Physics : Pccp. 21: 8785-8796 |
Galley SS, Pattenaude SA, Gaggioli CA, et al. (2019) Synthesis and Characterization of Tris-chelate Complexes for Understanding f-Orbital Bonding in Later Actinides. Journal of the American Chemical Society |
Hui J, Schorr NB, Pakhira S, et al. (2018) Achieving Fast and Efficient K Intercalation on Ultrathin Graphene Electrodes Modified by a Li Based Solid-Electrolyte Interphase. Journal of the American Chemical Society |
Garza AJ, Pakhira S, Bell AT, et al. (2018) Reaction mechanism of the selective reduction of CO to CO by a tetraaza [CoNH] complex in the presence of protons. Physical Chemistry Chemical Physics : Pccp |
Pakhira S, Lucht KP, Mendoza-Cortes JL. (2018) Dirac cone in two dimensional bilayer graphene by intercalation with V, Nb, and Ta transition metals. The Journal of Chemical Physics. 148: 064707 |
Hui J, Pakhira S, Bhargava R, et al. (2018) Modulating Electrocatalysis on Graphene Heterostructures: Physically Impermeable yet Electronically Transparent Electrodes. Acs Nano |
Lei Y, Pakhira S, Fujisawa K, et al. (2017) Low Temperature Synthesis of Heterostructures of Transition Metal Dichalcogenide Alloys (WxMo1-xS2) and Graphene with Superior Catalytic Performance for Hydrogen Evolution. Acs Nano |