Research Publications
Journal
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01 Anjan Kumar, Shashikant Sharma, Manisha Pattanaik, and Balwinder Raj, " Forward Body Biased Multimode Multi-Threshold CMOS Technique for Ground Bounce Noise Reduction in Static CMOS Adders,"International Journal of Information and Electronics Engineering vol. 3, no. 6, pp. 567-572, 2013.
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02 Manisha Pattanaik, Anjan Kumar ,Balwinder Raj,and Shashikant Sharma and ,” Diode Based Trimode Multi-Threshold CMOS Technique for Ground Bounce Noise Reduction in Static CMOS Adders”, International Conference on Electronics, Nanomaterials and Components, Advanced Materials Research Journal, Vol. 548, pp. 885-889, China 2012.
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03 Alok Kumar, Gaurav Kumar Sharma, Anjan Kumar, *Tarun Agrawal and Vivek Srivastava “Design of energy efficient random access memory circuit using stub series terminated logic i/o standard on 28nm FPGA" Asian Journal of Science and Technology Vol. 06, Issue 08, pp. 1699-1706, August, 2015.
SCI Publications(All as a First Author)
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1 Kumar, S. Singh, Advancement in inorganic hole transport materials for inverted perovskite solar cells, Journal of Electronic Materials, 49 (2020) 5840-5881.
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2 Kumar, S. Singh, Numerical modeling of planar lead free perovskite solar cell using tungsten disulfide (WS2) as an electron transport layer and Cu2O as a hole transport layer, Modern Physics Letters B, 34 (2020) 2050258.
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3 Kumar, S. Singh, R. Pandey, Computational Modelling and Optimization of a Methylammonium‐free Perovskite and Ga‐free Chalcogenide Tandem Solar Cell with an Efficiency above 25%, ChemistrySelect, 7 (2022) e202200667.
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4 Kumar, S. Singh, M.K. Mohammed, A.E. Shalan, Effect of 2D perovskite layer and multivalent defect on the performance of 3D/2D bilayered perovskite solar cells through computational simulation studies, Solar Energy, 223 (2021) 193-201.
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5 Kumar, S. Singh, M.K. Mohammed, A.E. Shalan, Computational Modelling of Two Terminal CIGS/Perovskite Tandem Solar Cells with Power Conversion Efficiency of 23.1%, European Journal of Inorganic Chemistry, 2021 (2021) 4959-4969.
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6 Kumar, S. Singh, A. Sharma, E.M. Ahmed, Efficient and stable perovskite solar cells by interface engineering at the interface of electron transport layer/perovskite, Optical Materials, 132 (2022) 112846.
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7 Kumar, S. Singh, M.K. Mohammed, D.K. Sharma, Accelerated innovation in developing high-performance metal halide perovskite solar cell using machine learning, International Journal of Modern Physics B, (2022) 2350067.
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8 Kumar, S. Singh, M. Al-Bahrani, Enhancement in Power Conversion Efficiency and Stability of Perovskite Solar Cell by Reducing Trap States using Trichloroacetic Acid Additive in Anti-solvent, Surfaces and Interfaces, (2022) 102341.
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9 Kumar, S. Singh, M.K. Mohammed, D.S. Ahmed, Experimental investigation of additive free-low-cost vinyl triarylamines based hole transport material for FAPbI3-based perovskite solar cells to enhance efficiency and stability, Materials Research Express, 10 (2023) 044003.
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10 Kumar, S. Singh, M.K. Mohammed, Numerical investigation of single junction environmental friendly double perovskite (Cs2AuBiCl6) solar cell with 20.5% power conversion efficiency and negligible hysteresis, International Journal of Energy Research, 46 (2022) 20180-20193.
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11 Kumar, M. Sayyed, S. Singh, M.K. Mohammed, Interface engineering of Tin (IV) oxide electron transport layer with Yttrium (III) fluoride for efficient carbon-based perovskite solar cells, Materials Science in Semiconductor Processing, 163 (2023) 107561.
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12 Kumar, A.K. Al-Mousoi, M.J. Saadh, M.K. Mohammed, G. Sarma, N. Ahmad, R. Tiwari, Investigation of the Cobalt-Additive Role in Improving the Performance of Formamidium Lead Triiodide Based Solar Cells, Electronic Materials Letters, (2023) 1-12.
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13 Kumar, M.K. Mohammed, M.U. Khandaker, H. Elsaeedy, T. Kumar, G.B. Ramaiah, M.K. Hossain, Tailoring the SnO2 electron transport layer with hydrofluoric acid to assemble efficient and stable HTL-free perovskite solar cells, Journal of Materials Science: Materials in Electronics, 34 (2023) 1-13.
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14 Kumar, M. Sayed, M.M. Sabugaa, S. Singh, J.C.O. Gavilán, A. Sharma, Additive Engineering with sodium azide material for Efficient Carbon-based Perovskite Solar Cells, New Journal of Chemistry, (2023).
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15 Kumar, S. Singh, D.K. Sharma, M. Al-Bahrani, M.R.H. Alhakeem, A. Sharma, T.C.A. Kumar, Cetrimonium bromide and potassium thiocyanate assisted post-vapor treatment approach to enhance power conversion efficiency and stability of FAPbI 3 perovskite solar cells, RSC Advances, 13 (2023) 1402-1411.
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16 Kumar, M. Sayyed, M.M. Sabugaa, R. Seemaladinne, J.C.O. Gavilán, P. Singh, A. Sharma, T.C.A. Kumar, Potassium hexacyanoferrate (III): A promising additive for perovskite precursors in carbon-based perovskite solar cells, Optical Materials, 142 (2023) 113986.
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17 Kumar, Anjan, et al. "Mixed-Dimensional Engineering to Generate a Desirable 2D/3D Heterostructure Perovskite Layer to Record Stable and Efficient Carbon-Based Perovskite Solar Cells." Energy & Fuels 37.21 (2023): 16924-16932.
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18 Kumar, Anjan, Sangeeta Singh, Kriti Srivastava, Amit Sharma, and Dilip Kumar Sharma. "Performance and stability enhancement of mixed dimensional bilayer inverted perovskite (BA2PbI4/MAPbI3) solar cell using drift-diffusion model." Sustainable Chemistry and Pharmacy 29 (2022): 100807.
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19 Kumar, Anjan, et al. "Performance enhancement of dye-sensitized solar cells based on nitrogen-doped graphene quantum dots." Computational and Theoretical Chemistry (2023): 114180.
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20 Kumar, A., Sayyed, M., Taki, A. G., Valverde, V., & Hernández, E. (2024). Enhancing the Stability and Efficiency of Carbon-Based Perovskite Solar Cell Performance with ZrO2-Decorated rGO Nano-sheets in a Mesoporous TiO2 Electron Transport Layer. Nanoscale Advances.