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Arijit Sengupta

Explore the profile of Arijit Sengupta including associated specialties, affiliations and a list of published articles. Areas
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Recent Articles
1.
Patra K, Mollick S, Sengupta A, Guchhait S
Nanoscale Adv . 2025 Feb; 7(4):984-1008. PMID: 39898282
Technetium-99 (Tc), a troublesome radioisotope prevalent in nuclear liquid waste, poses significant environmental and human health hazards due to its long half-life, high fission yield, and fast environmental mobility. The...
2.
Subramanian H, Sengupta A, Xu Y
J Med Internet Res . 2024 Nov; 26:e59674. PMID: 39504550
Background: The security and privacy of health care information are crucial for maintaining the societal value of health care as a public good. However, governance over electronic health care data...
3.
Goyal P, Srivastava A, Sengupta A, Das P, Ali S, Verboom W, et al.
Inorg Chem . 2024 Nov; 63(46):21963-21980. PMID: 39499278
Exothermic, spontaneous inner-sphere complexation of trivalent lanthanides with ,,',',″,″-hexaalkyl-substituted nitrilotriacetamides (HRNTAs) into 1-hexyl-3-methylimidazolium-bis(trifluoromethylsulfonyl)imide (Cmim NTf) is reported with a predominant presence of ML and ML complexes having complexation constants, β...
4.
Mandal W, Fajal S, Majumder D, Sengupta A, Let S, Urkude R, et al.
Chem Sci . 2024 Oct; PMID: 39430929
Tc is one of the potentially toxic radioactive substances owing to its long half-life and a high degree of environmental mobility. Hence, the sequestration of Tc from radioactive waste has...
5.
Shrivastava K, Kumar K, Sengupta A, Ali S, Ramkumar J
Anal Chem . 2024 Jul; 96(31):12658-12666. PMID: 39041178
A hydrophobic deep eutectic solvent (HDES)-based optode was designed for the preconcentration and determination of the UO ion in aqueous media using spectroscopic techniques [energy-dispersive X-ray fluorescence (EDXRF) and solid-state...
6.
Goyal P, Sengupta A, Srivastava A, Mukherjee S, Rout V, Mohapatra P
Inorg Chem . 2024 Apr; 63(16):7161-7176. PMID: 38591969
A quantitative, rapid, endothermic dissolution of UO in Cmim·PF (1-alkyl-3-methyl imidazolium hexafluorophosphate) has been achieved within 2 h at 65 °C by in situ generated fluoride ions by pre-equilibrating the...
7.
Sengupta A, Goyal P, Prava Mantry S, Sundararajan M, Verma P, Mohapatra P
Chemistry . 2024 Feb; 30(26):e202303923. PMID: 38314903
A simple, efficient, direct and economical method for the mutual separation of Nd and Pr was developed by the selective dissolution of NdO from their oxide mixtures in an ionic...
8.
Nagar A, Srivastava A, Sengupta A, Sk M, Goyal P, Verma P, et al.
Inorg Chem . 2024 Jan; 63(5):2533-2552. PMID: 38272469
A multitechnique approach with theoretical insights has been employed to understand the complexation of trivalent lanthanides with two β-diketones, viz. 1-phenyl-1,3-butanedione () and 4,4,4-trifluoro-1-phenyl-1,3-butanedione (), in an ionic liquid (Cmim·NTf)....
9.
Nagar A, Sengupta A, Sk M, Mohapatra P
Inorg Chem . 2023 Nov; 62(48):19631-19647. PMID: 37970800
The complexation of the betadiketone,1,1,1,2,2,3,3-heptafluoro-7,7-dimethyl-4,6-octanedione (HFOD) was studied with trivalent lanthanide ions, viz. Nd, La, and Eu in several methylimidazolium-based ionic liquids (Cmim•NTf, where, = 4,6,8). In Cmim•NTf, predominant formation...
10.
Goyal P, Sengupta A, Mohapatra P
ACS Omega . 2023 Oct; 8(39):36506-36520. PMID: 37810697
A 'green' single-step separation process, involving a phosphonium phosphinate functionalized ionic liquid (FIL) in Cmim·NTf, has been developed for highly encouraging improvements in the mutual separation of Nb and Ta...