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Recent advances in two-dimensional materials and their nanocomposites in sustainable energy conversion applications

机译:二维材料的最新进展他们在可持续能源的纳米复合材料转换的应用程序

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Two-dimensional (2D) materials have a wide platform in research and expanding nano- and atomic-level applications. This study is motivated by the well-established 2D catalysts, which demonstrate high efficiency, selectivity and sustainability exceeding that of classical noble metal catalysts for the oxygen reduction reaction (ORR), oxygen evolution reaction (OER), and/or hydrogen evolution reaction (HER). Nowadays, the hydrogen evolution reaction (HER) in water electrolysis is crucial for the cost-efficient production of a pure hydrogen fuel. We will also discuss another important point related to electrochemical carbon dioxide and nitrogen reduction (ECR and N2RR) in detail. In this review, we mainly focused on the recent progress in the fuel cell technology based on 2D materials, including graphene, transition metal dichalcogenides, black phosphorus, MXenes, metal-organic frameworks, and metal oxide nanosheets. First, the basic attributes of the 2D materials were described, and their fuel cell mechanisms were also summarized. Finally, some effective methods for enhancing the performance of the fuel cells based on 2D materials were also discussed, and the opportunities and challenges of 2D material-based fuel cells at the commercial level were also provided. This review can provide new avenues for 2D materials with properties suitable for fuel cell technology development and related fields.
机译:拥有广泛的二维(2 d)材料平台的研究和纳米和扩张原子水平的应用程序。出于完善2 d催化剂,这证明效率高、选择性古典的和可持续性的超过贵金属催化剂对氧还原反应(ORR)、氧进化反应(OER),(她)和/或氢进化反应。如今,氢进化反应(她的)电解水是至关重要的有成本效益的生产纯氢燃料。点与电化学有关二氧化碳和氮减少详细(ECR和N2RR)。在本文中,我们主要集中在最近燃料电池技术的进步基于2 d材料,包括石墨烯,过渡金属有机框架和金属氧化物nanosheets。材料描述,和他们的燃料电池机制也进行了总结。有效的方法来提高性能基于2 d的燃料电池材料也讨论,机遇和挑战二维材料燃料电池的商业化并提出了相应的水平。二维材料属性的新途径适用于燃料电池技术发展相关的领域。

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