Regio-isomerism directed electrocatalysis for energy efficient zinc-air battery
Title | Regio-isomerism directed electrocatalysis for energy efficient zinc-air battery |
Publication Type | Journal Article |
Year of Publication | 2022 |
Authors | Mukhopadhyay, S, Devendrachari, MChattanaha, Kanade, SC, Vinod, CPrabhakara, Kotresh, HMakri Nimb, Thotiyl, MOttakam |
Journal | iScience |
Volume | 25 |
Issue | 10 |
Pagination | 105179 |
Date Published | OCT |
Type of Article | Article |
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. |
DOI | 10.1016/j.isci.2022.105179 |
Type of Journal (Indian or Foreign) | Foreign |
Impact Factor (IF) | 6.107 |
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