화학공학소재연구정보센터
학회 한국화학공학회
학술대회 2022년 봄 (04/20 ~ 04/23, 제주국제컨벤션센터)
권호 28권 1호, p.412
발표분야 [주제 7] 수소
제목 Manipulating Nanoporous Mg Structure with High Surface Area for High-Performance Solid-State Hydrogen Storage
초록 Solid-state hydrogen storage with high volumetric density can be an optimal solution for effective hydrogen energy utilization, compared to the current gaseous storage system. Especially, Mg is considered a promising candidate with high hydrogen capacity of 7.6 wt% and abundance on Earth, but it still needs further improvements because of its sluggish kinetics and limited thermodynamics related to hydrogen sorption reaction. In this study, nanoporous Mg structure is synthesized via a reduction-induced decomposition to overcome such barriers. Porous structure could enhance the kinetics with reduced hydrogen diffusion length and high surface area, also alleviating the issue of volume expansion during hydrogen storage process. The synthetic approach in this study is a facile and scalable solution-based method, which is more efficient than the conventional dealloying to synthesize porous metal. The well-crystallized pure Mg porous structure was obtained and its hydrogen uptake/release capacity increases up to 6 wt% as the hydrogen cycle proceeds. It is expected that hydrogen storage through porous Mg structures can contribute to advancing the hydrogen energy industry in the future.
저자 김혜선, 조은선
소속 카이스트
키워드 재료(Materials)
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