Regio-isomerism directed electrocatalysis for energy efficient zinc-air battery

TitleRegio-isomerism directed electrocatalysis for energy efficient zinc-air battery
Publication TypeJournal Article
Year of Publication2022
AuthorsMukhopadhyay, S, Devendrachari, MChattanaha, Kanade, SC, Vinod, CPrabhakara, Kotresh, HMakri Nimb, Thotiyl, MOttakam
JournaliScience
Volume25
Issue10
Pagination105179
Date PublishedOCT
Type of ArticleArticle
Abstract

We have investigated the role of ligand isomerism in modulating the mechanisms and kinetics associated with charge/ discharge chemistry of an aqueous metal-air battery. The dominant electron-withdrawing inductive effect (-I effect) and the diminished electron-withdrawing resonance effect (-R effect) in the alpha-NO2 isomer noticeably diminishes the rate of oxygen reduction (ORR) and oxygen evolution reactions (OER) on the catalytic Co-center. In their beta-counterpart, the cumulative -I and -R effects noticeably enhance the OER and ORR kinetics on the same catalytic Co-center. Therefore, the regioisomerism of the -NO2 functionality amplifies the kinetics of ORR/OER without influencing their mechanistic pathways. When isomeric electrocatalysts are integrated to aid the charge chemistry of a Zn-air battery, the overpotential could be decreased by similar to 250mV with beta-NO2 isomer leading to a round-trip efficiency as high as 60%. This work contributes to the design of novel molecular platforms to target the overall round-trip efficiency of energy storage and conversion devices.

DOI10.1016/j.isci.2022.105179
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

6.107

Divison category: 
Catalysis and Inorganic Chemistry
Database: 
Web of Science (WoS)

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