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Srinivasan Alagar

Researcher at Alagappa University

Publications -  16
Citations -  222

Srinivasan Alagar is an academic researcher from Alagappa University. The author has contributed to research in topics: Electrode & Graphene. The author has an hindex of 7, co-authored 13 publications receiving 115 citations.

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Glassy carbon electrodes modified with reduced graphene oxide-MoS2-poly (3, 4-ethylene dioxythiophene) nanocomposites for the non-enzymatic detection of nitrite in water and milk.

TL;DR: The practical feasibility of the fabricated sensor is validated by the successful detection of nitrite ion in some water and milk samples with excellent correlation, and the feasible easier synthesis method was adopted first time to fabricate rGO-MoS2-PEDOT nanocomposite nitrite sensor in the milk and water samples with enhanced selectivity, sensitivity and LOD.
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Sensitive and selective non-enzymatic detection of glucose by monodispersed NiO @ S-doped hollow carbon sphere hybrid nanostructures.

TL;DR: The fabricated non-enzymatic biosensor developed by in-situ wraped NiO nanostructures on the sulfur-doped hollow carbon nanospheres (SDHCNSs) has demonstrated an excellent anti-interference property in the presence of common interferences and is applicable for the practical analysis of glucose in the real blood serum and urine samples.
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Nano-architectured porous Mn2O3 spheres/cubes vs rGO for asymmetric supercapacitors applications in novel solid-state electrolyte

TL;DR: In this article, a facile cost-effective hydrothermal route was proposed to synthesize homogeneously dispersed porous cubic structure Mn2O3 nanospheres and nanocubes to fabricate an efficient energy storage device.
Journal Article

Green synthesis, characterization, antimicrobial and cytotoxic effects of silver nanoparticles using origanum heracleoticum l. leaf extract

TL;DR: In this paper, green synthesized AgNPs were shown to exhibit effective antibacterial effect against pathogens and potential cytotoxic effect on MCF-7 cells in dose dependent manner.
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Solid-State Ball-Milling of Co3O4 Nano/Microspheres and Carbon Black Endorsed LaMnO3 Perovskite Catalyst for Bifunctional Oxygen Electrocatalysis

TL;DR: In this paper, a bifunctional catalyst for oxygen reduction and oxygen evolution reaction (ORR/OER) was developed using the mechanochemical route coupling of cobalt oxide nano/microspheres and carbon black particles incorporated lanthanum manganite perovskite (LaMnO3@C-Co3O4) composite.