Applications of electrospinning for fuel cell and electrolysis cell applications in hydrogen technologies

Antara Sarkar , Jerome Michael Bidu , Jagannath Panda , Young Je Kwon , Sohwi Bak , Kie Yong Cho , Segi Byun , Jun Young Cheong
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Abstract

With the diminishing reserves of fossil fuels and their detrimental environmental impacts, there has been a significant drive towards exploring alternative renewable energy sources. Among these, hydrogen emerges as a promising clean energy carrier, offering a viable alternative to traditional fossil fuels. Both the fuel cell and electrolysis cell capable of utilizing green hydrogen with the aid of electrospinning methods have attracted considerable attention for improving the hydrogen production or utilization efficiency and operational stability. This comprehensive review elucidates the fundamental principles of electrospinning and its applications in fabricating proton exchange membranes and solid oxide electrolysis/fuel-cells (PEMFC/ECs and SOFC/EC). With a primary focus on current status and future perspectives on employing electrospinning techniques for fuel cell and electrolysis cell in hydrogen technology, this review provides insights and knowledge relevant to applying electrospinning for hydrogen technologies.
静电纺丝在燃料电池中的应用和电解电池在氢技术中的应用
随着化石燃料储量的减少及其对环境的有害影响,探索替代可再生能源已成为一种重要的动力。其中,氢作为一种有前途的清洁能源载体,为传统化石燃料提供了可行的替代品。利用静电纺丝方法利用绿色氢的燃料电池和电解电池在提高制氢或利用效率和运行稳定性方面受到了广泛关注。本文综述了静电纺丝的基本原理及其在制备质子交换膜和固体氧化物电解/燃料电池(PEMFC/EC和SOFC/EC)中的应用。本文主要介绍了静电纺丝技术在燃料电池和电解电池氢技术中的应用现状和未来展望,为静电纺丝技术在氢技术中的应用提供了相关的见解和知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.90
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