Advanced nanomaterials for Li ion battery Photocatalytic dye degradation and Nitrite sensing studies

Abstract

ABSTRACT OF THE PROPOSED RESEARCH newlineIn this study, synthesised the single/ binary compounds including Ta2O5, MoO3, SnO2- newlineCuO and ZnWO4-CuWO4 advanced nanomaterials. The structural and morphology of the newlineprepared nanomaterials are examined by XRD, FTIR, Raman spectroscopy, SEM and newlineHRTEM. Thermal stability of the compounds is analysed by TGA-DTA analysis. Additional newlineinformation such as surface area and band gap are obtained by BET and UV-DRS analysis. newlineThe electrochemical performance by various parameters like Charge-Discharge, Cyclic newlineVoltammogram (CV) Columbic efficiency and Rate capability are studied towards lithium-ion newlinebatteries (LIBs). Photocatalysis includes the methylene blue (MB) dye degradation, this study newlinehas been carried out for the effluent s removal. Nitrite sensing gives the detection limit by using newlinethe glassy carbon electrode. newline

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