Pranab Sarkar

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Visva-Bharati University 
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"Pranab Sarkar"
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Ghosh A, Das P, Kumar S, et al. (2024) Hot carrier relaxation dynamics of an aza-covalent organic framework during photoexcitation: An insight from ab initio quantum dynamics. The Journal of Chemical Physics. 160
Kar M, Sarkar R, Pal S, et al. (2020) Two-dimensional CP 3 monolayer and its fluorinated derivative with promising electronic and optical properties: A theoretical study Physical Review B. 101: 195305
Kar M, Saha S, Sarkar R, et al. (2020) Comparative Study on the Photovoltaic Properties of ZnX (X = S, Se, Te) QD/CNT Inorganic/Organic Hybrid Nanocomposites Journal of Physical Chemistry C. 124: 7652-7660
Chakravarty C, Mandal B, Sarkar P. (2020) Bis(iminothiolato)-Based One Dimensional Metal-Organic Framework: Robust Bipolar Magnetic Semiconductor with Reversal of Spin-Polarization Journal of Physical Chemistry C. 124: 37-43
Ball B, Sarkar P. (2020) Triazine- and Keto-Functionalized Porous CovalentOrganic Framework as a Promising Anode Material for Na-Ion Batteries:A First-Principles Study Journal of Physical Chemistry C. 124: 15870-15878
Kar M, Sarkar S, Sarkar P. (2020) Highly Efficient Inorganic–Organic Heterojunction Solar Cells Based on Polymer and CdX (X = Se, Te) Quantum Dots: An Insight from a Theoretical Study The Journal of Physical Chemistry C. 124: 11350-11357
Ghosh NN, Saha S, Pramanik A, et al. (2020) Molecular design of porphyrin dyes using different electron-withdrawing moieties for high performance dye-sensitized solar cells Computational and Theoretical Chemistry. 1182: 112846
Kar M, Rajbanshi B, Sarkar R, et al. (2019) Periodically-ordered one and two dimensional CdTe QD superstructures: a path forward in photovoltaics. Physical Chemistry Chemical Physics : Pccp
Ghosh NN, Habib M, Pramanik A, et al. (2019) Molecular engineering of anchoring groups for designing efficient triazatruxene-based organic dye-sensitized solar cells New Journal of Chemistry. 43: 6480-6491
Ball B, Chakravarty C, Sarkar P. (2019) Two-Dimensional Covalent Triazine Framework as a Promising Anode Material for Li-Ion Batteries Journal of Physical Chemistry C. 123: 30155-30164
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