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Microenvironment modulation of single-atom catalysts and their roles in electrochemical energy conversion

机译:单原子催化剂的微环境调制及其在电化学能量转换中的作用

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Single-atom catalysts (SACs) have become the most attractive frontier research field in heterogeneous catalysis. Since the atomically dispersed metal atoms are commonly stabilized by ionic/covalent interactions with neighboring atoms, the geometric and electronic structures of SACs depend greatly on their microenvironment, which, in turn, determine the performances in catalytic processes. In this review, we will focus on the recently developed strategies of SAC synthesis, with attention on the microenvironment modulation of single-atom active sites of SACs. Furthermore, experimental and computational advances in understanding such microenvironment in association to the catalytic activity and mechanisms are summarized and exemplified in the electrochemical applications, including the water electrolysis and Osub2/sub/COsub2/sub/Nsub2/sub reduction reactions. Last, by highlighting the prospects and challenges for microenvironment engineering of SACs, we wish to shed some light on the further development of SACs for electrochemical energy conversion.
机译:单原子催化剂(SACS)已成为异构催化中最具吸引力的前沿研究领域。由于原子分散的金属原子通常通过与相邻原子的离子/共价相互作用而稳定,因此囊的几何和电子结构大大依赖于它们的微环境,这反过来依次确定催化过程中的性能。在这篇综述中,我们将专注于最近开发的囊综合的策略,引起了SACS单原子活性位点的微环境调制。此外,在理解与催化活性和机制相关联的这种微环境的实验和计算进展总结在电化学应用中,包括水电解和O 2 Co 2 / n <亚> 2 还原反应。最后,突出了囊的微环境工程的前景和挑战,我们希望在囊的进一步发展中阐明电化学能量转换。

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