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Optical Properties of Isolated and Covalent OrganicFramework-Embedded Ruthenium Complexes

机译:分离的共价有机物的光学性质框架嵌入钌配合物

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摘要

Heterogenization of RuL3 complexes on a support with proper anchor points provides a route toward design of green catalysts. In this paper, Ru(II) polypyridyl complexes are investigated with the aim to unravel the influence on the photocatalytic properties of varying nitrogen content in the ligands and of embedding the complex in a triazine-based covalent organic framework. To provide fundamental insight into the electronic mechanisms underlying this behavior, a computational study is performed. Both the ground and excited state properties of isolated and anchored ruthenium complexes are theoretically investigated by means of density functional theory and time-dependent density functional theory. Varying the ligands among 2,2′-bipyridine, 2,2′-bipyrimidine, and 2,2′-bipyrazine allows us to tune to a certain extent the optical gaps and the metal to ligand charge transfer excitations. Heterogenization of the complex within a CTF support has a significant effect on the nature and energy of the electronic transitions. The allowed transitions are significantlyred-shifted toward the near IR region and involve transitions fromstates localized on the CTF toward ligands attached to the ruthenium.The study shows how variations in ligands and anchoring on propersupports allows us to increase the range of wavelengths that may beexploited for photocatalysis.
机译:具有适当锚固点的载体上RuL3复合物的异质化为绿色催化剂的设计提供了一条途径。本文研究了Ru(II)聚吡啶基配合物,旨在揭示配体中不同氮含量以及将配合物嵌入基于三嗪的共价有机骨架中对光催化性能的影响。为了提供对该行为基础的电子机制的基本了解,进行了计算研究。借助密度泛函理论和随时间变化的密度泛函理论,对孤立的和锚定的钌配合物的基态和激发态性质进行了理论研究。在2,2'-联吡啶,2,2'-联嘧啶和2,2'-联吡嗪之间改变配体可以使我们在一定程度上调整光学间隙以及金属到配体的电荷转移激发。 CTF支持物内复合物的异质化对电子跃迁的性质和能量具有重大影响。允许的过渡非常明显红移向近红外区域并涉及从在CTF上定位于与钌连接的配体的状态。研究表明配体的变化和锚固在适当的支持使我们能够增加可能的波长范围用于光催化。

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