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异腈在磷光金属配合物中的多种功能。

The diverse functions of isocyanides in phosphorescent metal complexes.

作者信息

Sutton Gregory D, Olumba Morris E, Nguyen Yennie H, Teets Thomas S

机构信息

University of Houston, Department of Chemistry, 3585 Cullen Blvd., Room 112, Houston, TX 77204-5003, USA.

出版信息

Dalton Trans. 2021 Dec 14;50(48):17851-17863. doi: 10.1039/d1dt03312c.

Abstract

In this Perspective, we highlight many examples of photoluminescent metal complexes supported by isocyanides, with an emphasis on recent developments including several from our own group. Work in this field has shown that the isocyanide can play important structural roles, both as a terminal ligand and as a bridging ligand for polynuclear structures, and can influence the excited-state character and excited-state dynamics. In addition, there are many examples of isocyanide-supported complexes where the isocyanide serves as a chromophoric ligand, meaning the low-energy excited states that are important in the photochemistry are partially or completely localized on the isocyanide. Finally, an emerging trend in the design of luminescent compounds is to use the isocyanide as an electrophilic precursor, converted to an acyclic carbene by nucleophilic addition which imparts certain photophysical advantages. This Perspective aims to show the diverse roles played by isocyanides in the design of luminescent compounds, showcasing the recent developments that have led to a substantial growth in fundamental knowledge, function, and applications related to photoluminescence.

摘要

在这篇综述中,我们重点介绍了许多由异腈配体支撑的光致发光金属配合物的实例,尤其着重于近期的研究进展,其中包括我们团队的一些成果。该领域的研究表明,异腈既可以作为端基配体,也可以作为多核结构的桥联配体,发挥重要的结构作用,并且能够影响激发态性质和激发态动力学。此外,还有许多异腈支撑的配合物实例,其中异腈作为发色配体,这意味着在光化学中重要的低能激发态部分或完全定域在异腈上。最后,发光化合物设计中的一个新兴趋势是将异腈用作亲电前体,通过亲核加成转化为无环卡宾,这赋予了某些光物理优势。这篇综述旨在展示异腈在发光化合物设计中所扮演的多样角色,展现近期的研究进展,这些进展使与光致发光相关的基础知识、功能及应用有了显著增长。

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