Structural Modulation on NiCo S Nanoarray by N Doping to Enhance 2e-ORR Selectivity for Photothermal AOPs and Zn-O Batteries*.

Chemistry

Department of Chemistry, College of Science, Northeastern University, Shenyang City, Liaoning Province, 110819, China.

Published: October 2021

As a H O generator, a 2e oxygen reduction reaction active electrocatalyst plays an important role in the advanced oxidation process to degrade organic pollutants in sewage. To enhance the tendency of NiCo S towards the 2e reduction reaction, N atoms are doped in its structure and replace S . The result implies that this weakens the interaction between NiCo S and OOH*, suppresses O-O bond breaking and enhances H O selectivity. This electrocatalyst also shows photothermal effect. Under photothermal heating, H O produced by the oxidation reduction reaction can decompose and releaseOH, which degrades organic pollutants through the advanced oxidation process. Photothermal effect induced by the advance oxidation process shows obvious advantages over the traditional Fenton reaction, such as wide pH adaptation scope and low secondary pollutant due to its Fe free character. With Zn as anode and the electrocatalyst as cathode material, a Zn-O battery is assembled. It achieves electricity generation and photothermal effect induced by the advance oxidation process simultaneously.

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http://dx.doi.org/10.1002/chem.202101786DOI Listing

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