Ionomer Side Chains Modulate Interfacial Microenvironments for Selective CO2 Electrolysis

  • Park, Jihyun; 
  • Chae, Younghyun; 
  • Lee, Chanwoo; 
  • Kwon, Gyeongjin; 
  • Lee, Woong Hee; 
  • ... Cho, Jinhan; 
  • 외 3명
Citations

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초록

This study investigates how the molecular structure of imidazolium ionomers with linear alkyl side chains (CnH2n+1 where n = 1, 4, 10, 16) modulates interfacial microenvironments in the Ag-catalyzed CO2 reduction reaction (CO2RR). Variations in side chain length and molecular weight establish structure-performance relationships that link hydrophobicity and ion transport to activity and selectivity. Longer side chains suppress hydrogen evolution and enhance the CO2RR, with the n-hexadecyl ionomer achieving the highest Faradaic efficiency for the CO2RR of 90.1% in a two-compartment cell. Incorporation of this ionomer in a cation-exchange membrane-based membrane electrode assembly achieves selective CO production with a partial current density exceeding 100 mA cm(-2), outperforming a commercial benchmark. Controlled studies under lean and acidic electrolytes reveal that the ionomer maintains local alkaline environments by restricting the interfacial water and proton transport. These findings provide molecular-level insights into ionomer function and design principles for selective CO2RR in practical electrolyzers.

키워드

CO2 reduction; Ag catalyst; ionomer; microenvironment; MEA; CARBON-DIOXIDE; REDUCTION; ELECTROREDUCTION
제목
Ionomer Side Chains Modulate Interfacial Microenvironments for Selective CO2 Electrolysis
저자
Park, Jihyun; Chae, Younghyun; Lee, Chanwoo; Kwon, Gyeongjin; Lee, Woong Hee; Jeon, Hyo Sang; Cho, Jinhan; Won, Da Hye; Koh, Jai Hyun
DOI
10.1021/acscatal.5c03583
발행일
2025-07-05
유형
Article
저널명
ACS Catalysis
권
15
호
14
페이지
12222 ~ 12230