系统间交叉
磷光
光化学
分子内力
蒽
化学
发色团
三重态
钳子运动
轨道能级差
铂金
分子
激发态
立体化学
有机化学
单重态
催化作用
荧光
物理
核物理学
量子力学
作者
Iida Partanen,Chao‐Hsien Hsu,Emily Hsue‐Chi Shi,Iván Maisuls,Toni Eskelinen,Antti J. Karttunen,Jarkko J. Saarinen,Cristian A. Strassert,Andrey Belyaev,Pi‐Tai Chou,Igor O. Koshevoy
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-03-12
卷期号:64 (21): e202503327-e202503327
被引量:9
标识
DOI:10.1002/anie.202503327
摘要
Abstract A family of coordination compounds with short intramolecular spatial separation between an organic chromophore and a metal center was studied. The specific geometry was realized by means of anthracene‐functionalized tertiary aryl phosphanes. Their silver and gold complexes ( 1 , 2 ) operate as conventional fluorophores, with photophysical behavior defined by anthracene‐localized allowed transitions. In contrast, bichromophoric species, containing phenyl bipyridine‐ ( 3 , 5 , 6 , 8 ) or terpyridine‐ ( 4 , 7 ) derived platinum(II) fragments, demonstrate fast intersystem crossing to the triplet state associated with the pincer metal component. Theoretical results corroborated that the short intramolecular distance between the platinum constituent and the adjacent anthracene facilitates subsequent through‐space triplet ( T 2 , pincer fragment)→triplet ( T 1 , anthracene) energy transfer. This process occurs at a rate of ∼10 11 s −1 , surpassing the rates of T 2 →S 0 relaxation. This prevents visible phosphorescence from the platinum(II) motifs but enables near‐IR organic phosphorescence in the solid state, including dyes with very inefficient intersystem‐crossing (ISC). Thus, the composite molecules 3 – 8 illustrate a feasible approach to the tunable sensitization of organic dyes and the design of low‐energy triplet emitters.
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