Viologen-Bromide Dual-Redox Ionic Solid Complexes: Understanding Their Electrochemical Formation and Proton-Accompanied Redox Chemistry

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초록

The inhibition of self-discharge in a redox-enhanced electrochemical capacitor (Redox-EC) is crucial for excellent energy retention. Heptyl viologen dibromide (HVBr2) was chosen as a strong candidate of a dual-redox species in Redox-EC due to its solid complexations during the charging process, at which HV2+ is electrochemically reduced to HV+center dot and form a solid complex, [HV+center dot center dot Br-], on an anode while Br- is electro-oxidized to Br-3(-) and renders [HV2+center dot 2Br(3)(-)] on a cathode. The solid complexes could not transfer across the separator, resulting in significant diminution of the self-discharge. In this Article, we present detailed electrochemical studies of formation of [HV2+center dot 2Br(3)(-)] and [HV+center dot center dot Br-], their redox features, and galvanic exchange reactions between the two types of dual-redox ionic solids on a Pt ultra-microelectrode (UME) in neutral (0.33 M Na2SO4) and acidic (1 M H2SO4) solutions. Most importantly, through voltammetric and particle-impact electrochemical analyses, we found that the redox and galvanic exchange reactions of the two dual-redox ionic solid complexes involve H+ transfer, which is the key process to limit the overall kinetics of the electrochemical reactions. We also rationalize the proton-accompanied galvanic exchange reaction based on computational simulation.

키워드

redox-enhanced electrochemical capacitordual-redox ionic solid complexationproton-accompanied redox chemistryparticle-impact electrochemistrygalvanic exchange reactionSINGLE-NANOPARTICLE COLLISIONSAMMONIUM POLYBROMIDE DROPLETSQUATERNARY AMMONIUMELECTROCATALYTIC AMPLIFICATIONELECTROPHORETIC MIGRATIONAQUEOUS-ELECTROLYTEEMULSION DROPLETMERCURYSTORAGEULTRAMICROELECTRODE
제목
Viologen-Bromide Dual-Redox Ionic Solid Complexes: Understanding Their Electrochemical Formation and Proton-Accompanied Redox Chemistry
저자
Lee, SemiMuya, Jules TshishimbiChung, HoeilChang, Jinho
DOI
10.1021/acsami.9b13985
발행일
2019-11
유형
Article
저널명
ACS Applied Materials and Interfaces
11
46
페이지
43659 ~ 43670