
Jamatia Laboratory of Catalysis

From PhD and Post PhD
22. Change in the Product Selectivity in the Visible Light-Induced Selenium Radical-Mediated 1, 4-Aryl Migration Process: Roy, M.; Jamatia, R.; Samanta, A.; Mohar, K.; Srimani, D.; Org. Lett. 2022, 24, 8180-8185.
21. One‐Pot Multicomponent Reaction: A Highly Versatile Strategy for the Construction of Valuable Nitrogen‐Containing Heterocycles: Nandi, S.; Jamatia, R.; Sarkar, R.; Sarkar, F. K.; Alam, S.; Pal, A. K.; ChemistrySelect, 2022, 7, e202201901.
20. Ru Doped Hydrotalcite Catalyzed Borrowing Hydrogen-Mediated N-Alkylation of Benzamides, Sulfonamides, and Dehydrogenative Synthesis of Quinazolinones: Sardar, B.; Jamatia, R.; Samanta, A.; Srimani, D.; J. Org. Chem. 2022, 87, 5556–5567.
19. Multicomponent dehydrogenative synthesis of acridine‐1, 8‐diones catalyzed by Ru‐doped hydrotalcite: Sardar, B.; Jamatia, R.; Pal, D.; Srimani, D.; Asian J. Org. Chem. 2021, 10, 2195-2204.
18. A green and sustainable approach for the synthesis of 1,5-benzodiazepines and spirooxindoles in one-pot using a MIL-101(Cr) metal–organic framework as a reusable catalyst: Sarkar, F. K.; Gupta, A.; Jamatia, R.; Anal, J. M. H.; Pal, A. K; New J. Chem. 2021, 45, 19553-19564.
17. Visible light induced manganese catalyzed reactions: a present approach and future prospects: Jamatia, R.; Mondal, A.; Srimani, D.; Adv. Synth. Catal. 2021, 12, 2696-2995.
16. Development of a new catalytic and sustainable methodology for the synthesis of benzodiazepine triazole scaffold using magnetically separable CuFe2O4@MIL101(Cr) nano-catalyst in aqueous medium: Gupta, A.; Sarkar, F. K.; Sarkar, R.; Jamatia, R.; Lee, C. Y.; Gupta, G.; Pal, A. K.; Appl. Organomet. Chem. 2020, e5782, 1-12.
15. Reduced graphene oxide supported copper oxide nanocomposites: an efficient heterogeneous and reusable catalyst for the synthesis of ynones, 1,3‐diynes and 1,5‐benzodiazepines in one‐pot under sustainable reaction conditions: Sarkar, R.; Gupta, A.; Jamatia, R.; Pal, A. K.; Appl. Organomet. Chem. 2020, 34, 1-20.
14. Development of Synergistic, Dual Pd‐Cu@ rGO Catalyst for Suzuki, Heck and click reactions: facile synthesis of triazole or tetrazole containing biaryls and stilbenes: Gupta, A.; Jamatia, R.; Dam, B.; Pal, A. K.; ChemistrySelect 2018, 3, 8212-8220.
13. Copper oxide/reduced graphene oxide nanocomposite-catalyzed synthesis of flavanones and flavanones with triazole hybrid molecules in one pot: a green and sustainable Approach: Gupta, A.; Jamatia, R.; Patil, R. A.; Ma, Y.-R.; Pal, A. K.; ACS Omega 2018, 3, 7288-7299.
12. Metal-free greener syntheses of pyrimidine derivatives using a highly efficient and reusable graphite oxide carbocatalyst under solvent-free reaction conditions: Dam, B.; Jamatia, R.; Gupta, A.; Pal, A. K.; ACS Sustainable Chem. Eng. 2017, 5, 11459-11469.
11. Ru-ferrite-decorated graphene (RuFG): a sustainable and efficient catalyst for conversion of aromatic aldehydes and nitriles to primary amides in aqueous medium: Jamatia, R.; Gupta, A.; Pal, A. K.; ACS Sustainable Chem. Eng. 2017, 5, 7604-7612.
10.Metalloprotein Inspired Ruthenium Polymeric Complex: A Highly Efficient Catalyst in ppm Level for 1,3-dipolar Huisgen’s Reaction in Aqueous Medium at Room Temperature: Gupta, A.; Jamatia, R.; Mahato. M.; Pal, A. K.; Ind. Eng. Chem. Res. 2017, 56, 2375-2382.
9. Graphite oxide a metal free highly efficient carbocatalyst for the synthesis of 1,5-benzodiazepines under room temperature and solvent free heating condition: Jamatia, R.; Gupta, A.; Dam, B.; Saha, M.; Pal, A. K.; Green Chem. 2017, 19, 1576-1585.
8. A metalloprotein inspired ruthenium complex as an efficient and reusable catalyst for selective oxidation of alcohols to their corresponding carbonyl compounds: Jamatia, R.; Gupta, A.; Mahato, M.; Patil, R. A.; Ma, Y.-R.; Pal, A. K.; ChemistrySelect 2016, 1, 5929-5935.
7.A coumarin based schiff base probe for selective fluorescence detection of Al3+ and its application in live cell imaging: Sen, B.; Sheet, S. K.; Thounaojam, R.; Jamatia, R.; Pal, A. K.; Aguan, K.; Khatua, S.; Spectrochim. Acta A: Mol. Biomol. Spectrosc. 2017, 173, 537-543.
6. Nano-ferrite supported glutathione as a reusable nano-organocatalyst for the synthesis of phthalazine-trione and dione derivatives under solvent-free conditions: Dam. B.; Saha, M; Jamatia, R.; Pal, A. K.; RSC Adv. 2016, 6, 54768-54776.
5. Superparamagnetic copper ferrite nanoparticles catalyzed one step regioselective synthesis of dibenzodiazepinones via ligand and base free Ullmann type coupling reaction: Jamatia, R.; Gupta, A.; Pal, A. K.; ChemistrySelect 2016, 4, 852-860.
4. Nano-FGT: a green and sustainable catalyst for the synthesis of spirooxindoles in aqueous medium: Jamatia, R.; Gupta, A.; Pal, A. K.; RSC Adv. 2016, 6, 20994-21000.
3. Ferrite-supported glutathione: an efficient, green nano-organocatalyst for the synthesis of pyran derivatives: Gupta, A.; Jamatia, R.; Pal, A. K.; New J. Chem. 2015, 39, 5636-5642.
2. An efficient facile and one-pot synthesis of benzodiazepines and chemoselective 1,2-disubstituted benzimidazoles using a magnetically retrievable Fe3O4 nanocatalyst under solvent free conditions: Jamatia, R.; Saha, M.; Pal, A. K.; RSC Adv. 2014, 4, 12826-12833.
1. Solvent free, Ni-nanoparticle catalyzed greener synthesis and photophysical studies of novel 2H-indazolo[2,1-b] phthalazine-trione derivatives: Saha, M.; Phukan, S.; Jamatia, R.; Mitra, S.; Pal, A. K.; RSC Adv. 2013, 3, 1714-1721.