Abstract In situ integration of highly conductive metals into transitional metal oxide electrodes with enabling fast electron transfer kinetics is a plausible technique for improving electrochemical performances of electrode materials. Herein, for the first time, we demonstrate a rational configuration of conductive Ag flakes (FAg) that directly grown on CuO nanorods by in situ chemical approach. The obtained FAg–CuO hybrid electrode demonstrates a superior specific capacitance...
Abstract Geogenic contamination of arsenic in the groundwater of the Indian subcontinent and other parts of the world has been reported. Many methods have been developed to remove arsenic species from water. The most promising technology is adsorption for its merits such as simple in operation, low cost, and considerably insignificant by-product formation. In this study, a new polymer-based nano-adsorbent for As(V) has been prepared using a synergistic approach of molecular imprinting...
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