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Recent advances in single-atom catalysts and single-atom alloys: opportunities for exploring the uncharted phase space in-between

机译:单原子催化剂和单原子合金的最新进展:探索在介于之间未知的相空间的机会

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Single-atom catalysts (SACs) have gained significant world-wide attention for exhibiting distinct reactivity and selectivity for important reactions, while utilizing precious metals at the ultimate limit of efficiency. SACs involving reducible oxide supports are good catalysts for oxidation reactions, and metal-acid site pairs enable CC bond formation, but SACs can deactivate by sintering under reducing conditions. On the other hand, single-atom alloys (SAAs) are robust towards sintering and exhibit exceptional catalytic performance for a wide range of reactions under reducing conditions but can deactivate under oxidizing environments. Therefore, there is tremendous opportunity to explore and exploit catalytic reactivity between the SAC and SAA extremes. This paper focuses on recent advances in both fields and highlights prospects for future research.
机译:单颗粒催化剂(SACS)已经获得了显着的全世界关注,用于表现出不同的反应性和对重要反应的选择性,同时利用贵金属在最终的效率极限。涉及氧化物氧化物载体的囊是氧化反应的良好催化剂,金属酸部位对使得CC键形成使得囊可以通过在还原条件下通过烧结去激活。另一方面,单原子合金(SaaS)对烧结具有稳健性,并且在还原条件下具有广泛的反应,但可以在氧化环境下失效。因此,有巨大的机会探索和利用囊和Saa极端之间的催化反应性。本文重点介绍了两个领域的最新进展,并突出了未来研究的前景。

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