Electronic transport through DNA nucleotides in atomically thin phosphorene electrodes for rapid DNA sequencing RL Kumawat, P Garg, S Kumar, B Pathak ACS applied materials & interfaces 11 (1), 219-225, 2018 | 53 | 2018 |
Individual Identification of DNA nucleobases on atomically thin black phosphorene nanoribbons: van der Waals corrected density functional theory calculations RL Kumawat, B Pathak The Journal of Physical Chemistry C 123 (36), 22377-22383, 2019 | 43 | 2019 |
Individual identification of amino acids on an atomically thin hydrogen boride system using electronic transport calculations RL Kumawat, MK Jena, B Pathak The Journal of Physical Chemistry C 124 (49), 27194-27202, 2020 | 21 | 2020 |
Functionalized Carbon Nanotube Electrodes for Controlled DNA Sequencing RLKB Pathak Nanoscale Advances 2, 4041-4050, 2020 | 21 | 2020 |
Electronic Transport through DNA Nucleotides in BC3 Nanogap for Rapid DNA Sequencing RL Kumawat, P Garg, G Bhattacharyya, B Pathak ACS Applied Electronic Materials 2 (5), 1218-1225, 2020 | 21 | 2020 |
Electronic conductance and current modulation through Graphdiyne nanopores for DNA sequencing RL Kumawat, B Pathak ACS Applied Electronic Materials 3 (9), 3835-3845, 2021 | 20 | 2021 |
First-Principles Density Functional Theory Study on Graphene and Borophene Nanopores for Individual Identification of DNA Nucleotides MK Jena, RL Kumawat, B Pathak ACS Applied Nano Materials 4 (12), 13573-13586, 2021 | 19 | 2021 |
Identifying DNA Nucleotides via Transverse Electronic Transport in Atomically Thin Topologically Defected Graphene Electrodes RL Kumawat, B Pathak ACS Applied Bio Materials 4 (2), 1403-1412, 2020 | 19 | 2020 |
Spin-polarized current in ferromagnetic half-metallic transition-metal iodide nanowires S Kumar, RL Kumawat, B Pathak The Journal of Physical Chemistry C 123 (25), 15717-15723, 2019 | 17 | 2019 |
Review on applications of artificial neural networks to develop high entropy alloys: A state-of-the-art technique SK Dewangan, C Nagarjuna, R Jain, RL Kumawat, V Kumar, A Sharma, ... Materials Today Communications, 107298, 2023 | 16 | 2023 |
Electronic and transport properties of bilayer phosphorene nanojunction: Effect of paired substitution doping V Shukla, RL Kumawat, NK Jena, B Pathak, R Ahuja ACS Applied Electronic Materials 3 (2), 733-742, 2021 | 16 | 2021 |
Extended topological line defects in graphene for individual identification of DNA nucleobases RL Kumawat, B Pathak Materials Advances 1 (8), 2908-2916, 2020 | 16 | 2020 |
Prospects of black phosphorus nanoribbon for explosive sensing: A computational approach RL Kumawat, B Pathak Applied surface science 529, 147094, 2020 | 13 | 2020 |
High-order quantum-mechanical analysis of hydrogen bonding in hachimoji and natural DNA base pairs RL Kumawat, CD Sherrill Journal of Chemical Information and Modeling 63 (10), 3150-3157, 2023 | 10 | 2023 |
Graphene Nanoslit Device for Protein Sequencing: Ab Initio Quantum Transport Study S Mittal, RL Kumawat, MK Jena, B Pathak ACS Applied Nano Materials 5 (2), 2715-2727, 2022 | 9 | 2022 |
Strong anisotropy and band Gap engineering with mechanical strains in two-dimensional orthorhombic diboron dinitride (O-B2N2) RL Kumawat, B Pathak Applied Surface Science 586, 152850, 2022 | 8 | 2022 |
Synthetic Diversity and Luminescence Properties of ArN(PPh2)2‐Based Copper(I) Complexes N Kathewad, S Pal, RL Kumawat, M Ehesan Ali, S Khan European Journal of Inorganic Chemistry 2018 (22), 2518-2523, 2018 | 8 | 2018 |
Identifying Single-Stranded DNA by Tuning the Graphene Nanogap Size: An Ionic Current Approach RL Kumawat, B Pathak The Journal of Physical Chemistry B 126 (6), 1178-1187, 2022 | 4 | 2022 |
Conductance and tunnelling current characteristics for individual identification of synthetic nucleic acids with a graphene device RL Kumawat, B Pathak Physical Chemistry Chemical Physics 24 (26), 15756-15766, 2022 | 4 | 2022 |
Porphyrin nanoribbon-based spin filtering devices G Bhattacharyya, RL Kumawat, B Pathak Physical Chemistry Chemical Physics 22 (28), 16368-16377, 2020 | 4 | 2020 |