Srimanta Pakhira

Affiliations: 
Italian Institute of Technology, Genoa, United States 
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"Srimanta Pakhira"
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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
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