Recent advances in single-atom catalysts for electrocatalytic synthesis of hydrogen peroxide

Helai Huang , Mingze Sun , Mei Li , Lei Tang , Shengbo Zhang
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Abstract

The electro-synthesis of hydrogen peroxide has attracted extensive research interest and is expected to replace conventional chemical processes as a mild and safe approach. Single-atom catalysts (SACs) have been applied in a wide variety of thermo- and electro-chemical reactions due to their high atom utilization and highly tunable electronic structure. Herein, an in-depth discussion on recent advances of SACs in the field of hydrogen peroxide electro-synthesis is summarized, specifically on the surface structure and electronic effects that enable high activity and selectivity of SACs. Different synthesis and modification strategies of SACs are discussed in detail, emphasizing the remarkable versatility of SACs utilization in this field. Finally, the opportunities and challenges of SACs for electrocatalytic synthesis of hydrogen peroxide are summarized in terms of rational design, controlled synthesis, and the stability of operation at high current densities of SACs to meet practical requirements.

Abstract Image

电催化合成过氧化氢的单原子催化剂研究进展
过氧化氢的电合成引起了广泛的研究兴趣,有望取代传统的化学工艺,成为一种温和安全的方法。单原子催化剂(SAC)由于其高原子利用率和高度可调的电子结构,已被应用于各种热化学反应中。在此,总结了SAC在过氧化氢电合成领域的最新进展,特别是SAC的表面结构和电子效应,使其具有高活性和高选择性。详细讨论了SAC的不同合成和修饰策略,强调了SAC在该领域应用的显著多样性。最后,从SAC的合理设计、可控合成以及在高电流密度下操作的稳定性等方面总结了SAC在电催化合成过氧化氢方面的机遇和挑战,以满足实际要求。
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