Thermal conductivity of graphene with defects induced by electron beam irradiation H Malekpour, P Ramnani, S Srinivasan, G Balasubramanian, DL Nika, ... Nanoscale 8 (30), 14608-14616, 2016 | 247 | 2016 |
Materials informatics for the screening of multi-principal elements and high-entropy alloys JM Rickman, HM Chan, MP Harmer, JA Smeltzer, CJ Marvel, A Roy, ... Nature communications 10 (1), 2618, 2019 | 166 | 2019 |
Machine learned feature identification for predicting phase and Young's modulus of low-, medium-and high-entropy alloys A Roy, T Babuska, B Krick, G Balasubramanian Scripta Materialia 185, 152-158, 2020 | 116 | 2020 |
Pyrolysis reaction networks for lignin model compounds: unraveling thermal deconstruction of β-O-4 and α-O-4 compounds YS Choi, R Singh, J Zhang, G Balasubramanian, MR Sturgeon, ... Green Chemistry 18 (6), 1762-1773, 2016 | 115 | 2016 |
Modeling of thermochemical energy storage by salt hydrates G Balasubramanian, M Ghommem, MR Hajj, WP Wong, JA Tomlin, IK Puri International Journal of Heat and Mass Transfer 53 (25-26), 5700-5706, 2010 | 107 | 2010 |
Atomistic clustering-ordering and high-strain deformation of an Al0.1CrCoFeNi high-entropy alloy A Sharma, P Singh, DD Johnson, PK Liaw, G Balasubramanian Scientific reports 6 (1), 31028, 2016 | 103 | 2016 |
Lattice distortion as an estimator of solid solution strengthening in high-entropy alloys A Roy, P Sreeramagiri, T Babuska, B Krick, PK Ray, G Balasubramanian Materials Characterization 172, 110877, 2021 | 99 | 2021 |
Heat conduction across a solid-solid interface: Understanding nanoscale interfacial effects on thermal resistance G Balasubramanian, IK Puri Applied Physics Letters 99 (1), 2011 | 95 | 2011 |
An environmentally stable and lead‐free chalcogenide perovskite T Gupta, D Ghoshal, A Yoshimura, S Basu, PK Chow, AS Lakhnot, ... Advanced Functional Materials 30 (23), 2001387, 2020 | 83 | 2020 |
Design of high-strength refractory complex solid-solution alloys P Singh, A Sharma, AV Smirnov, MS Diallo, PK Ray, G Balasubramanian, ... npj Computational Materials 4 (1), 16, 2018 | 75 | 2018 |
Dislocation dynamics in Al0. 1CoCrFeNi high-entropy alloy under tensile loading A Sharma, G Balasubramanian Intermetallics 91, 31-34, 2017 | 70 | 2017 |
Accelerating computational modeling and design of high-entropy alloys R Singh, A Sharma, P Singh, G Balasubramanian, DD Johnson Nature Computational Science 1 (1), 54-61, 2021 | 62 | 2021 |
Thermal conductivity reduction through isotope substitution in nanomaterials: predictions from an analytical classical model and nonequilibrium molecular dynamics simulations G Balasubramanian, IK Puri, MC Böhm, F Leroy Nanoscale 3 (9), 3714-3720, 2011 | 61 | 2011 |
Machine learning strategies for high-entropy alloys JM Rickman, G Balasubramanian, CJ Marvel, HM Chan, MT Burton Journal of applied physics 128 (22), 2020 | 59 | 2020 |
Unsteady nanoscale thermal transport across a solid-fluid interface G Balasubramanian, S Banerjee, IK Puri Journal of Applied Physics 104 (6), 2008 | 59 | 2008 |
Surface oxidation mechanism of a refractory high-entropy alloy E Osei-Agyemang, G Balasubramanian npj Materials Degradation 3 (1), 20, 2019 | 56 | 2019 |
Effect of temperature and graphite particle fillers on thermal conductivity and viscosity of phase change material n-eicosane S Srinivasan, MS Diallo, SK Saha, OA Abass, A Sharma, ... International Journal of Heat and Mass Transfer 114, 318-323, 2017 | 54 | 2017 |
Machine learning assisted prediction of the Young’s modulus of compositionally complex alloys H Khakurel, MFN Taufique, A Roy, G Balasubramanian, G Ouyang, J Cui, ... Scientific reports 11 (1), 17149, 2021 | 51 | 2021 |
Crystallization kinetics in AlxCrCoFeNi (0≤ x≤ 40) high-entropy alloys A Sharma, SA Deshmukh, PK Liaw, G Balasubramanian Scripta Materialia 141, 54-57, 2017 | 49 | 2017 |
Modifying thermal transport in electrically conducting polymers: Effects of stretching and combining polymer chains S Pal, G Balasubramanian, IK Puri The Journal of chemical physics 136 (4), 2012 | 48 | 2012 |