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关键时刻:解析非发射型中不饱和BODIPY染料的机制与范围

When push comes to shove: unravelling the mechanism and scope of nonemissive meso-unsaturated BODIPY dyes.

作者信息

Lincoln Richard, Greene Lana E, Bain Cheryl, Flores-Rizo Juan O, Bohle D Scott, Cosa Gonzalo

机构信息

†Department of Chemistry and Center for Self Assembled Chemical Structures, McGill University, 801 Sherbrooke Street West, Montreal, Quebec H3A 2K6, Canada.

‡Departamento de Química, Universidad de Guanajuato, Col. Noria Alta S/N, Guanajuato, Gto 36050, Mexico.

出版信息

J Phys Chem B. 2015 Apr 2;119(13):4758-65. doi: 10.1021/acs.jpcb.5b02080. Epub 2015 Mar 18.

Abstract

We report herein spectroscopy and computational results that illustrate an efficient intramolecular deactivation pathway for meso-unsaturated boron-dipyrromethene (BODIPY) dyes in their singlet excited state. Our results show that the mechanism hinges on the structural flexibility imparted by the boron atom and on the energetic stabilization conferred by extending the conjugation into the meso substituent, which is otherwise unconjugated in the ground state. Following photoexcitation, rotation along the dihedral angle of the meso-unsaturated group results in its conjugation at the expense of shifting one pyrrole moiety in dipyrrin out of the plane. Internal conversion to an energetically hot, ground-state species efficiently competes with emission. The mechanism applies to meso-vinyl, -formyl, and -iminyl moieties. The presence of methyl groups at positions C1 and C7 exacerbates the energetic penalty toward conjugation of the meso groups leading to a small energy gap between relaxed excited state and ground state and undetected emission quantum yields. Importantly, methyls at C1 and C7 prevent nonradiative deactivation in meso-aryl moieties, illustrating that when push comes to shove, the energetic (kinetic) barrier toward reaching conjugation is too large for aryl moieties but low enough for smaller groups to effectively compete with radiative transitions. Wisely chosen meso-unsaturated BODIPY dyes may serve as richly sensitive platforms for the preparation of novel fluorogenic substrates to monitor chemical reactions or to probe the rigidity of their surrounding environment.

摘要

我们在此报告光谱学和计算结果,这些结果阐明了内消旋不饱和硼二吡咯亚甲基(BODIPY)染料在其单重激发态下的一种高效分子内失活途径。我们的结果表明,该机制取决于硼原子赋予的结构灵活性以及通过将共轭延伸到内消旋取代基而带来的能量稳定化,该取代基在基态下原本是不共轭的。光激发后,沿着内消旋不饱和基团的二面角旋转会导致其共轭,代价是二吡咯中一个吡咯部分移出平面。向能量较高的基态物种的内转换有效地与发射竞争。该机制适用于内消旋乙烯基、甲酰基和亚氨基部分。在C1和C7位置存在甲基会加剧内消旋基团共轭的能量代价,导致弛豫激发态和基态之间的能隙较小且发射量子产率未被检测到。重要的是,C1和C7处的甲基可防止内消旋芳基部分发生非辐射失活,这表明在关键时刻,芳基部分达到共轭的能量(动力学)障碍太大,而对于较小的基团则足够低,能够有效地与辐射跃迁竞争。明智地选择内消旋不饱和BODIPY染料可作为高度灵敏的平台,用于制备新型荧光底物以监测化学反应或探测其周围环境的刚性。

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