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首页> 外文期刊>Nanoscale >Novel quadrilateral-pore 2D-COFs as visible-light driven catalysts evaluated by the descriptor of integrated pz-orbital population
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Novel quadrilateral-pore 2D-COFs as visible-light driven catalysts evaluated by the descriptor of integrated pz-orbital population

机译:新型四边形孔隙2D-COFs作为可见光驱动催化剂,通过积分pz轨道群的描述符进行评估

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摘要

In the past few decades, strategies for designing new two-dimensional covalent organic framework (2D-COF) structures have been limited to the shape of positive hexagonal pores, and the underlying relationship between their structure and electronic properties still remains unclear. Herein, novel 2D-COFs with C, N and H elements confined to the quadrilateral-pore skeleton based on first-principles calculations and the topological assembly of different benzene-based building blocks were designed and studied. These 2D-COFs enriched the topology types and can offer an ideal platform for band engineering aimed at spontaneously driving the hydrogen evolution reaction (HER) under visible light irradiation. The approach for regulating pore structures on nodes, linkers and linkages can effectively tune band gaps, and thus the 2D-COF, consisting of benzene building blocks and imine linkages, has the optimal activity for the photocatalytic HER under common visible light conditions. Furthermore, the integrated pz-orbital population was found to evaluate the photocatalytic activity efficiently. We demonstrate that the pz-orbital population is in linear relationship with the intensity of H+ adsorption, indicating that the total contribution of the pz-orbital electrons can be an efficient descriptor for screening suitable 2D-COF structures for use as photocatalysts for the HER. Therefore, this work presents a new strategy for designing novel quadrilateral-pore 2D-COFs as visible-light photocatalysts and provides an important insight into the relationship between catalytic activity and the population of activated electrons.
机译:在过去的几十年里,策略设计新的二维共价有机框架(2 d-cof)一直局限于结构积极的六角孔的形状,潜在的结构之间的关系和电子性质仍不清楚。在此,小说2 d-cofs C、N、H元素局限于quadrilateral-pore骨架的基础采用基于计算和拓扑组装不同的苯类构件的设计和研究。2 d-cofs丰富拓扑类型和可以提供乐队工程旨在一个理想的平台自发地推动氢进化可见光照射下反应(她)。调节孔隙结构的方法可以有效地调整节点,连接基团和联系带隙,因此2 d-cof组成的苯积木和亚胺联系光催化的最佳活动常见的可见光条件下。此外,人口综合pz轨道发现评价光催化活动高效。人口是线性关系H +吸附强度,表明总pz轨道电子的贡献可以是一个有效的筛选描述符适合用作2 d-cof结构她的论文。提出了一种新的策略,设计新颖quadrilateral-pore 2 d-cofs可见光论文,提供了重要的洞察力催化活性之间的关系和激活电子的人口。

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