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Ultrathin two-dimensional metallic nanocrystals for renewable energy electrocatalysis

机译:用于可再生能源电催化的超薄二维金属纳米晶体

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摘要

Even since the discovery of exfoliated graphene, exponentially growing efforts have been devoted to the search of novel 2 dimensional (2D) nanomaterials with atomic thickness and the extension of their applications. Among the huge 2D materials family, ultrathin 2D metallic nanocrystals gain vast attention due to the unique importance of transition metals to heterogeneous catalysis. Here, we review recent representative advances in ultrathin 2D metallic nanocrystals and their catalytic applications toward a variety of reactions, including the hydrogen generation, oxygen reduction/evolution, CO2 activation, and small molecules’ oxidation/hydrogenation. Special focuses are placed in current understanding of bottom-up fabrication of ultrathin 2D metallic nanocrystals, the establishment of their structure–performance relationship as well as the implication of their real applications in devices. We also shed light on further structural modification of the ultrathin 2D metallic nanocrystals to achieve the optimized catalytic performance. At end of this review, we discuss the remaining challenges and future opportunities in this burgeoning research area.
机译:甚至从发现剥离石墨烯的发现,已经致力于寻找具有原子厚度和其应用的原子厚度和延伸的新型二维(2D)纳米材料的努力。在巨大的2D材料家庭中,超薄2D金属纳米晶体由于过渡金属与异质催化的独特重要性而引起了广泛的关注。在这里,我们审查了最近的超薄2D金属纳米晶体及其催化应用朝各种反应的代表性进展,包括氢产生,氧还原/进化,CO 2活化和小分子氧化/氢化。特别焦点置于目前对超薄2D金属纳米晶体的自下而上的制造的理解,建立了它们的结构性能关系以及它们在设备中的实际应用的含义。我们还揭示了超薄2D金属纳米晶体的进一步结构改性,实现了优化的催化性能。在本综述结束时,我们讨论了这一蓬勃发展的研究区的剩余挑战和未来机遇。

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