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Dr. Dinesh gupta
Dr. Dinesh gupta
A. Research Manager, R & D Centre, IOCL
Dirección de correo verificada de chemical.iitd.ac.in - Página principal
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Porphyrin-based porous organic polymer-supported iron (III) catalyst for efficient aerobic oxidation of 5-hydroxymethyl-furfural into 2, 5-furandicarboxylic acid
B Saha, D Gupta, MM Abu-Omar, A Modak, A Bhaumik
Journal of Catalysis 299, 316-320, 2013
2282013
Synthesis of 5‐hydroxymethylfurural from carbohydrates using large‐pore mesoporous tin phosphate
A Dutta, D Gupta, AK Patra, B Saha, A Bhaumik
ChemSusChem 7 (3), 925-933, 2014
1472014
Efficient Solid Acid Catalyst Containing Lewis and Brønsted Acid Sites for the Production of Furfurals
PDABPDMMAO Michael G. Mazzotta, Dinesh Gupta, Dr. Basudeb Saha, Dr. Astam K ...
ChemSusChem 7 (8), 2342–2350, 2014
1252014
Design of 3-Dimensionally Self-Assembled CeO2 Nanocube as a Breakthrough Catalyst for Efficient Alkylarene Oxidation in Water
K Deori, D Gupta, B Saha, S Deka
ACS Catalysis 4 (2014), 3169−3179, 2014
852014
Introducing nanocrystalline CeO 2 as heterogeneous environmental friendly catalyst for the aerobic oxidation of para-xylene to terephthalic acid in water
K Deori, D Gupta, B Saha, SK Awasthi, S Deka
Journal of Materials Chemistry A 1 (24), 7091-7099, 2013
692013
Hydrotalcite supported bimetallic (Ni-Cu) catalyst: A smart choice for one-pot conversion of biomass-derived platform chemicals to hydrogenated biofuels
KKP Dinesh Gupta, Rohit Kumar
Fuel 277 (1), 118111, 2020
502020
Efficient utilization of potash alum as a green catalyst for production of furfural, 5-hydroxymethylfurfural and levulinic acid from mono-sugars
KKPBS Dinesh Gupta, Ejaz Ahmad
RSC Advance 7 (https://doi.org/10.1039/c7ra07147g), 41973-41979, 2017
362017
Dual acidic titania carbocatalyst for cascade reaction of sugar to etherified fuel additives
BS DineshGupta
Catalysis Communications, 2018
292018
Aerobic Oxidation of Isoeugenol to Vanillin with Copper Oxide Doped Reduced Graphene Oxide
BS Ashish Bohre, Dinesh Gupta, Md. Imteyaz Alam,Rakesh K. Sharma
ChemistrySelect 2 (10), 3129 – 3136, 2017
232017
Titania nanoparticles embedded in functionalized carbon for the aqueous phase oxidation of 5-hydroxymethylfurfural
BS Dinesh Gupta, Kamal K. Pant
Journal of Molecular Catalysis A: Chemical 435, 182–188, 2017
20*2017
Carbon nanosphere supported Ru catalyst for the synthesis of renewable herbicide and chemicals
BS Dinesh Gupta
Catalysis Communication, 2017
15*2017
Cu (II)-β-CD as Water-Loving Catalyst for One-Pot Synthesis of Triazoles and Biofuels Intermediate at Room Temperature without Any Other Additive
DSK Dr. Dinesh Gupta, Anju Mishra
Chemistry Select 2 (10), 2997–3008, 2017
12*2017
Efficient dual acidic carbo-catalyst for one-pot conversion of carbohydrates to levulinic acid
SKBS Dinesh Gupta
RSC Advances 6 (102), 100417–100426, 2016
112016
Topotactic transformation of homogeneous phosphotungastomolybdic acid materials to heterogeneous solid acid catalyst for carbohydrate conversion to alkyl methylfurfural and …
KKP Dinesh Gupta*, Chandrakant Mukesh
RSC Advance 10 (2), 705-718, 2020
102020
Valorization of microcrystalline cellulose using heterogeneous protonated zeolite catalyst: an experimental and kinetics approach
S Kassaye, D Gupta, KK Pant, S Jain
Reactions 3 (2), 283-299, 2022
32022
Rational Tailoring of Metal Precursor Interactions with the Zeolite Support in the Mo/HZSM-5 Catalyst for Methane Dehydroaromatization
S Balyan, I Ahangar, M Ussama, D Gupta, TS Khan, KK Pant, ...
Crystal Growth & Design 24 (4), 1529-1543, 2024
2024
Functional carbo-catalysts for selective production of advanced fuels
DG Basudeb Saha, Saikat Dutta
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 256, 2018
2018
Topotactic transformation of homogeneous phosphotungastomolybdic acid to heterogeneous solid acid catalyst for carbohydrate conversion to alkyl levulinate
KKP Dinesh Gupta
The 25th Internatinal Symposium on Chemical Reaction Engineering 25, 1-7, 2018
2018
A process for producing aromatic carboxylic acids by oxidation of methyl arenes
B Saha, S Deka, D Gupta, KJ Deori
2014
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Artículos 1–19