1 |
Ultrafine reverse micelle catalysts for slurry-phase residue hydrocracking Prajapati R, Kohli K, Maity SK, Sharma BK Catalysis Today, 358, 228, 2020 |
2 |
Deactivation of a hydrotreating catalyst during hydroprocessing of synthetic crude by metal bearing compounds Kohli K, Prajapati R, Maity SK, Sau M, Sharma BK Fuel, 243, 579, 2019 |
3 |
Residue upgradation with slurry phase catalyst: Effect of feedstock properties Prajapati R, Kohli K, Maity SK Fuel, 239, 452, 2019 |
4 |
Accelerated pre-coking of NiMo/gamma-Al2O3 catalyst: Effect on the hydroprocessing activity of vacuum residue Kohli K, Prajapati R, Maity SK, Sau M, Sharma BK Fuel, 235, 437, 2019 |
5 |
pH-Responsive Nano-Self-Assemblies of the Anticancer Drug 2-Hydroxyoleic Acid Prajapati R, Gontsarik M, Yaghmur A, Salentinig S Langmuir, 35(24), 7954, 2019 |
6 |
Slurry-Phase Hydrocracking of Residue with Ultradispersed MoS2 Catalysts Prepared by Microemulsion Methods Prajapati R, Kohli K, Maity SK Energy & Fuels, 31(4), 3905, 2017 |
7 |
Coking propensity during hydroprocessing of vacuum residues, deasphalted oils, and asphaltenes Prajapati R, Kohli K, Maity SK, Garg MO Fuel, 203, 514, 2017 |
8 |
Disruption of Epac1 protects the heart from adenylyl cyclase type 5-mediated cardiac dysfunction Cai W, Fujita T, Hidaka Y, Jin H, Suita K, Prajapati R, Liang C, Umemura M, Yokoyama U, Sato M, Okumura S, Ishikawa Y Biochemical and Biophysical Research Communications, 475(1), 1, 2016 |
9 |
UV-B-Heavy Metal Interaction: Comparative Evaluation on Photosynthetic Properties of Three Cyanobacteria Yadav S, Prajapati R, Atri N Current Microbiology, 73(5), 739, 2016 |
10 |
Deactivation of hydrotreating catalyst by metals in resin and asphaltene parts of heavy oil and residues Kohli K, Prajapati R, Maity SK, Sau M, Garg MO Fuel, 175, 264, 2016 |