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带有二氰乙烯基侧基的硼二吡咯亚甲基(Bodipy)染料的激基复合物发射。

Exciplex emission from a boron dipyrromethene (Bodipy) dye equipped with a dicyanovinyl appendage.

机构信息

LCOSA, ICPEES, UMR7515, CNRS/Université de Strasbourg/ECPM, 25 rue Becquerel, 67087 Strasbourg, Cedex 02 (France), Fax: (+33) 3-68-85-27-61 http://icpees.unistra.fr/lcosa/

出版信息

Chemphyschem. 2014 Jan 13;15(1):177-86. doi: 10.1002/cphc.201300805. Epub 2013 Dec 20.

Abstract

The photophysical properties of a prototypic donor-acceptor dyad, featuring a conventional boron dipyrromethene (Bodipy) dye linked to a dicyanovinyl unit through a meso-phenylene ring, have been recorded in weakly polar solvents. The absorption spectrum remains unperturbed relative to that of the parent Bodipy dye but the fluorescence is extensively quenched. At room temperature, the emission spectrum comprises roughly equal contributions from the regular π, π* excited-singlet state and from an exciplex formed by partial charge transfer from Bodipy to the dicyanovinyl residue. This mixture moves progressively in favor of the locally excited π, π* state on cooling and the exciplex is no longer seen in frozen media; the overall emission quantum yield changes dramatically near the freezing point of the solvent. The exciplex, which has a lifetime of approximately 1 ns at room temperature, can also be seen by transient absorption spectroscopy, in which it decays to form the locally excited triplet state. Under applied pressure (P<170 MPa), formation of the exciplex is somewhat hindered by restricted rotation around the semirigid linkage and again the emission profile shifts in favor of the π, π* excited state. At higher pressure (170<P<550 MPa), the molecule undergoes reversible distortion that has a small effect on the yield of π, π* emission but severely quenches exciplex fluorescence. In the limiting case, this high-pressure effect decreases the molar volume of the solute by approximately 25 cm(3) and opens a new channel for nonradiative deactivation of the excited-state manifold.

摘要

一个典型的给体-受体二聚体的光物理性质,其特征是通过中-亚苯基环将传统的硼二吡咯甲川(Bodipy)染料与二氰基乙烯基单元连接,在弱极性溶剂中被记录下来。吸收光谱相对于母体 Bodipy 染料的吸收光谱没有受到干扰,但荧光却被广泛猝灭。在室温下,发射光谱大致由规则的π,π激发单线态和由 Bodipy 向二氰基乙烯基残基部分电荷转移形成的激基复合物组成。这种混合物随着冷却逐渐有利于局部激发的π,π态,并且在冷冻介质中不再看到激基复合物;整体发射量子产率在溶剂冰点附近发生剧烈变化。激基复合物在室温下的寿命约为 1 ns,也可以通过瞬态吸收光谱观察到,其中它衰减形成局部激发三重态。在施加的压力(P<170 MPa)下,激基复合物的形成由于半刚性连接的限制旋转而受到一定程度的阻碍,并且发射谱再次有利于π,π激发态。在更高的压力(170<P<550 MPa)下,分子经历可逆的变形,这对π,π发射的产率只有微小的影响,但严重猝灭激基复合物荧光。在极限情况下,这种高压效应使溶质的摩尔体积减小约 25 cm(3),并为激发态级联的非辐射去活开辟了一个新的通道。

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