Follow
Dr. Harshvardhan Singh
Title
Cited by
Cited by
Year
Heterogeneously Porous γ‐MnO2‐Catalyzed Direct Oxidative Amination of Benzoxazole through CH Activation in the Presence of O2
P Pal, AK Giri, H Singh, SC Ghosh, AB Panda
Chemistry–An Asian Journal 9 (9), 2392-2396, 2014
342014
Visible light-promoted photocatalytic C-5 carboxylation of 8-aminoquinoline amides and sulfonamides via a single electron transfer pathway
C Sen, T Sahoo, H Singh, E Suresh, SC Ghosh
The Journal of Organic Chemistry 84 (16), 9869-9896, 2019
282019
Copper‐Catalyzed C‐4 Carboxylation of 1‐Naphthylamide Derivatives with CBr4/MeOH
T Sahoo, C Sen, H Singh, E Suresh, SC Ghosh
Advanced Synthesis & Catalysis 361 (17), 3950-3957, 2019
192019
Heterogeneous Cu‐MnO Catalyzed Monoselective ortho‐Halogenation of Aromatic C−H Bonds under Visible Light
P Pal, H Singh, AB Panda, SC Ghosh
Asian Journal of Organic Chemistry 4 (9), 879-883, 2015
192015
A Visible Light‐Mediated Regioselective Halogenation of Anilides and Quinolines by Using a Heterogeneous Cu‐MnO Catalyst
H Singh, C Sen, T Sahoo, SC Ghosh
European Journal of Organic Chemistry 2018 (34), 4748-4753, 2018
182018
Heterogeneous Cu‐MnO‐Catalyzed Direct C−H Amination of Azoles Using O2 as the Sole Oxidant
H Singh, P Pal, C Sen, AB Panda, SC Ghosh
Asian Journal of Organic Chemistry 6 (6), 702-706, 2017
172017
Aerobic oxidative alkynylation of H-phosphonates and amides: an efficient route for the synthesis of alkynylphosphonates and ynamides using a recyclable Cu–MnO catalyst
H Singh, T Sahoo, C Sen, SM Galani, SC Ghosh
Catalysis Science & Technology 9 (7), 1691-1698, 2019
132019
C–H amidation and amination of arenes and heteroarenes with amide and amine using Cu-MnO as a reusable catalyst under mild conditions
H Singh, C Sen, E Suresh, AB Panda, SC Ghosh
The Journal of Organic Chemistry 86 (4), 3261-3275, 2021
102021
Halogenation of Anilides and Quinolines on a MnO-Supported Copper Catalyst
Y Uozumi, K Tani
Synfacts 14 (12), 1319, 2018
2018
The system can't perform the operation now. Try again later.
Articles 1–9