Advanced Design Strategy in Polymer Electrolyte Membrane Fuel Cells: Micro-channeling Architectures in Carbon Nanotube Sheets

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초록

Maintaining high performance under varying relative humidity (RH) conditions remains a significant challenge for polymer electrolyte membrane fuel cells (PEMFCs). This difficulty arises from the delicate balance required between mass transport and water management. This study presents an alternative PEMFC design that replaces conventional bipolar plates by incorporating a carbon nanotube sheet (approximate to 30 mu m) as a functional interlayer. The engraved channel-rib CNT sheet, fabricated via laser processing, is located between the gas diffusion layer and the catalyst layer. This configuration improves performance under all tested RH conditions (40-100% RH), primarily due to the effective distribution of reactants and water within the channels. The proposed design yields up to a approximate to 270% increase in power density, along with significant reductions in charge transfer resistance (approximate to 76.1%) and ohmic resistance (approximate to 27.0%) compared to the conventional. Furthermore, it demonstrates remarkable stability, showing a 87.5% reduction in performance variation across the tested RH range compared to the conventional. This strategy offers a potential solution to minimize performance fluctuations under varying operating conditions, thereby enhancing the commercial viability of PEMFC applications.

키워드

carbon nanotubelaser-engraved microchannelspolymer electrolyte membrane fuel cellsrelative humidity tolerancewater managementGAS-DIFFUSION LAYERLIQUID WATER TRANSPORTPERFORMANCEFIBERS
제목
Advanced Design Strategy in Polymer Electrolyte Membrane Fuel Cells: Micro-channeling Architectures in Carbon Nanotube Sheets
저자
Park, JunghyunPark, GyutaeYang, SeonghyeonBaek, JiwonLim, JooyoungYoun, JunseoKim, DongjinNa, JuhoOh, Hyoun-MyoungCho, YoungjaeJeong, SubinChoi, Ji InAhn, JiyoonPark, Sung-HoonJeong, YoungjinPark, Taehyun
DOI
10.1002/smll.202507687
발행일
2025-12
유형
Article
저널명
Small
21
51