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Venkatesan Subramanian

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Articles 63
Citations 220
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Recent Articles
1.
Karthikraja E, Chowdhury C, Rao Nulakani N, Ramanujam K, Vaidyanathan V, Subramanian V
Chem Asian J . 2024 Nov; 20(3):e202401256. PMID: 39563169
The increasing global energy demand and environmental pollution necessitate the development of alternative, sustainable energy sources. Hydrogen production through electrochemical methods offers a carbon-free energy solution. In this study, we...
2.
Chowdhury C, Karthikraja E, Subramanian V
Phys Chem Chem Phys . 2024 Sep; 26(38):25143-25155. PMID: 39311924
The realm of atomic catalysts has witnessed notable advancements; yet, the predominant focus remains on single atomic catalysts (SACs). The exploration and successful implementation of dual atomic catalysts (DACs) pose...
3.
Karuppusamy M, Panneer S, Varathan E, Ravva M, Easwaramoorthi S, Subramanian V
J Phys Chem A . 2024 May; 128(21):4206-4224. PMID: 38752229
The development of small-molecule organic solar cells with the required efficiency depends on the information obtained from molecular-level studies. In this context, 39 small-molecule donors featuring isoindigo as an acceptor...
4.
Subramanian V, Dhandayuthapani U, Kandasamy S, Sivaprakasam J, Balasubramaniam P, Shanmugam M, et al.
BMC Plant Biol . 2024 May; 24(1):402. PMID: 38745317
Rice metabolomics is widely used for biomarker research in the fields of pharmacology. As a consequence, characterization of the variations of the pigmented and non-pigmented traditional rice varieties of Tamil...
5.
Choutipalli V, Subramanian V
Phys Chem Chem Phys . 2024 Apr; 26(16):12495-12509. PMID: 38600843
Developing efficient catalysts for ammonia synthesis is increasingly crucial but remains a formidable challenge due to the lack of robust design criteria, particularly in addressing the activity and selectivity issues,...
6.
Pandidurai S, Choutipalli V, Subramanian V, Sekar G
Org Lett . 2024 Mar; 26(15):2971-2975. PMID: 38547367
An efficient approach for the synthesis of chiral pyrrolo[1,2-][1,4]thiazine-2-carbaldehydes is achieved via formal 1,3-dipolar cycloaddition/rearrangement reactions of benzothiazolium salt and α,β-unsaturated aldehydes, utilizing an asymmetric organocatalyst. This process results in...
7.
Rao Nulakani N, Ali M, Subramanian V
Chemphyschem . 2023 Aug; 24(21):e202300266. PMID: 37609863
In the present study, a novel and unconventional two-dimensional (2D) material with Dirac electronic features has been designed using sulflower with the help of density functional theory methods and first...
8.
Esackraj K, Rao Nulakani N, Choutipalli V, Chowdhury C, Murugan P, Vaidyanathan V, et al.
Chemphyschem . 2023 Mar; 24(11):e202300035. PMID: 36905251
Generally, graphynes have been generated by the insertion of acetylenic content (-C≡C-) in the graphene network in different ratios. Also, several aesthetically pleasing architectures of two-dimensional (2D) flatlands have been...
9.
Mallick S, Choutipalli V, Bag S, Subramanian V, Raj C
ACS Appl Mater Interfaces . 2022 Aug; 14(33):37577-37586. PMID: 35944146
The rational defect engineering of Mn-based spinel cathode materials by metal-ion doping and vacancy creation fosters reversible intercalation/deintercalation of charge carriers and boosts the charge storage performance of an aqueous...
10.
Mudedla S, Murugan N, Subramanian V, Agren H
RSC Adv . 2022 May; 9(3):1613-1624. PMID: 35518018
The present work is motivated by the established concept that the structure and energetics of biomacromolecules can be modulated by confining their dimensions in the nanoscale. In particular, here we...