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杂环的π-扩展:钯催化的杂环芳炔环化反应——用于热激活延迟荧光发射体的π-扩展供体

π-Extension of heterocycles a Pd-catalyzed heterocyclic aryne annulation: π-extended donors for TADF emitters.

作者信息

Spence Katie A, Chari Jason V, Di Niro Mattia, Susick Robert B, Ukwitegetse Narcisse, Djurovich Peter I, Thompson Mark E, Garg Neil K

机构信息

Department of Chemistry and Biochemistry, University of California at Los Angeles Los Angeles California 90095 USA

Department of Chemistry, University of Southern California Los Angeles California 90089 USA

出版信息

Chem Sci. 2022 May 4;13(20):5884-5892. doi: 10.1039/d2sc01788a. eCollection 2022 May 25.

Abstract

We report the annulation of heterocyclic building blocks to access π-extended polycyclic aromatic hydrocarbons (PAHs). The method involves the trapping of short-lived hetarynes with catalytically-generated biaryl palladium intermediates and allows for the concise appendage of three or more fused aromatic rings about a central heterocyclic building block. Our studies focus on annulating the indole and carbazole heterocycles through the use of indolyne and carbazolyne chemistry, respectively, the latter of which required the synthesis of a new carbazolyne precursor. Notably, these represent rare examples of transition metal-catalyzed reactions of N-containing hetarynes. We demonstrate the utility of our methodology in the synthesis of heterocyclic π-extended PAHs, which were then applied as ligands in two-coordinate metal complexes. As a result of these studies, we identified a new thermally-activated delayed fluorescence (TADF) emitter that displays up to 81% photoluminescence efficiency, along with insight into structure-property relationships. These studies underscore the utility of heterocyclic strained intermediates in the synthesis and study of organic materials.

摘要

我们报道了通过杂环结构单元的环化反应来合成π-扩展多环芳烃(PAHs)。该方法涉及用催化生成的联芳基钯中间体捕获短寿命的杂芳炔,并能够围绕中心杂环结构单元简洁地连接三个或更多稠合芳环。我们的研究分别聚焦于通过吲哚炔和咔唑炔化学,使吲哚和咔唑杂环发生环化反应,其中后者需要合成一种新的咔唑炔前体。值得注意的是,这些是含氮杂芳炔的过渡金属催化反应的罕见实例。我们展示了我们的方法在合成杂环π-扩展PAHs中的实用性,这些PAHs随后被用作双配位金属配合物中的配体。通过这些研究,我们鉴定出一种新的热激活延迟荧光(TADF)发射体,其光致发光效率高达81%,同时深入了解了结构-性质关系。这些研究强调了杂环张力中间体在有机材料合成和研究中的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/796f/9132060/a20e5da48241/d2sc01788a-f1.jpg

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