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Achieving an exceptionally high loading of isolated cobalt single atoms on a porous carbon matrix for efficient visible-light-driven photocatalytic hydrogen production

机译:在多孔碳基质上实现极高的孤立钴单原子负载量以有效地产生可见光驱动的光催化制氢

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摘要

Single-atom catalysts (SACs) have shown great potential in a wide variety of chemical reactions and become the most active new frontier in catalysis due to the maximum efficiency of metal atom use. The key obstacle in preparing SAs lies in the development of appropriate supports that can avoid aggregation or sintering during synthetic procedures. As such, achieving high loadings of isolated SAs is nontrivial and challenging. Conventional methods usually afford the formation of SAs with extremely low loadings (less than 1.5 wt%). In this work, a new in situ preparation strategy that enables the synthesis of isolated cobalt (Co) SAs with an exceptionally high metal loading, up to 5.9 wt%, is developed. The approach is based on a simple one-step pyrolysis of a nitrogen-enriched molecular carbon precursor (1,4,5,8,9,12-hexaazatriphenylene hexacarbonitrile) and CoCl2. Furthermore, due to the successful electron transfer from carbon nitride to the isolated Co SAs, we demonstrate a high-performance photocatalytic H2 production using Co SAs as a co-catalyst, and the evolution rate is measured to be 1180 μmol g–1 h–1. We anticipate that this new study will inspire the discovery of more isolated SACs with high metal loadings, evidently advancing the development of this emerging type of advanced catalysts.
机译:单原子催化剂(SAC)在多种化学反应中显示出巨大潜力,并且由于最大程度地利用金属原子而成为催化领域最活跃的新领域。制备SA的主要障碍在于开发合适的支撑物,这些支撑物可避免在合成过程中发生聚集或烧结。因此,实现高负载的隔离SA并非易事且具有挑战性。常规方法通常以极低的负载量(小于1.5 wt%)形成SA。在这项工作中,开发了一种新的原位制备策略,该策略能够合成具有高达5.9 wt%的极高金属负载的分离的钴(Co)SA。该方法基于富氮分子碳前体(1,4,5,8,9,12-六氮杂苯并六甲腈)和CoCl2的简单一步热解。此外,由于成功地将电子从氮化碳转移到了分离的Co SA中,我们证明了使用Co SA作为助催化剂的高性能光催化H2的生产,其析出速率据测为1180μmolg 1 h –1 。我们预计,这项新研究将启发人们发现更多具有高金属含量的孤立SAC,从而明显促进这种新兴类型的高级催化剂的开发。

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