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通过 DFT 指导的方法调整电荷光积累 Ru 配合物的电子存储势能。

Tuning the Electron Storage Potential of a Charge-Photoaccumulating Ru Complex by a DFT-Guided Approach.

机构信息

Univ. Grenoble Alpes, CNRS, CEA, IRIG, Laboratoire de Chimie et Biologie des Métaux, 38000, Grenoble, France.

Univ. Grenoble Alpes, CEA, CNRS, IRIG-DIESE-SyMMES-CAMPE, 38000, Grenoble, France.

出版信息

Chemistry. 2019 Nov 4;25(61):13911-13920. doi: 10.1002/chem.201902312. Epub 2019 Sep 30.

Abstract

Molecular photosensitizers that are able to store multiple reducing equivalents are of great interest in the field of solar fuel production, where most reactions involve multielectronic reduction processes. In order to increase the reducing power of a ruthenium tris-diimine charge-photoaccumulating complex, two structural modifications on its fused dipyridophenazine-pyridoquinolinone ligand were computationally investigated. Addition of an electron-donating oxime group was calculated to substantially decrease the reduction potentials of the complex, thus guiding the synthesis of a pyridoquinolinone-oxime derivative. Its spectroscopic and (spectro)electrochemical characterization experimentally confirmed the DFT predictions, with the first and second reduction processes cathodically shifted by -0.24 and -0.14 V, respectively, compared to the parent complex. Moreover, the ability of this novel artificial photosynthetic system to store two photogenerated electrons at a more reducing potential, via a proton-coupled electron-transfer mechanism, was demonstrated.

摘要

在太阳能燃料生产领域,能够储存多个还原当量的分子光催化剂引起了极大的兴趣,因为大多数反应都涉及多电子还原过程。为了提高钌三-二亚胺电荷-光积累配合物的还原能力,对其稠合的二吡啶并[1,2-a:2',1'-c]吩嗪-吡啶并[2,3-b]喹喔啉配体进行了两种结构修饰的计算研究。计算表明,引入供电子肟基团会大大降低配合物的还原电位,从而指导合成吡啶并[2,3-b]喹喔啉-肟衍生物。其光谱和(光谱)电化学特性的实验表征证实了 DFT 的预测结果,与母体配合物相比,第一和第二还原过程分别向阴极移动了-0.24 和-0.14 V。此外,该新型人工光合作用系统通过质子耦合电子转移机制,在更还原的电位下储存两个光生电子的能力得到了证明。

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