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光诱导分子内电荷转移驱动的抗衡离子迁移

Counterion Migration Driven by Light-Induced Intramolecular Charge Transfer.

作者信息

Lin Ta-Chun, Liu Zong-Ying, Liu Shih-Hung, Koshevoy Igor O, Chou Pi-Tai

机构信息

Department of Chemistry, National Taiwan University, Taipei, Taiwan 10617, ROC.

Department of Chemistry, University of Eastern Finland, Yliopistokatu 7, 80101 Joensuu, Finland.

出版信息

JACS Au. 2021 Jan 25;1(3):282-293. doi: 10.1021/jacsau.0c00107. eCollection 2021 Mar 22.

Abstract

A series of D-π- pyridinium compounds, in which D = -NPh and A = -PyMe are linked by various amounts of linear phenyl spacers, were strategically designed and synthesized. Their characterization revealed the presence of excited-state intramolecular charge transfer (ESICT) that triggers a corresponding response from the counterion. In medium and strong polar solvents, the fast solvent relaxation occurring after ESICT overwhelms the counterion effect, showing typical emission solvatochromism. In weakly polar solvents, ESICT induces counteranion migration for electrostatic stabilization, the time scale of which is dependent on the radius of the counteranion, the length of the π-linker, and the viscosity of the solvent. In low-viscosity organic solvents such as toluene, counteranion migration occurs within several tens to hundreds of picoseconds, resulting in a time-dependent continuous emission that can be resolved from the spectral temporal evolution. Concrete evidence for this is provided by the chemical synthesis of a D-π- pyridinium-sulfur trioxide zwitterion, where anion migration is restricted due to its internally locked ion pair. As a result, only a single emission band can be observed. These comprehensive studies prove that the ion migration process may be significant for a wide range of ESICT-type ionic fluorophores. Such an ionic movement, triggered by optically pumped ESICT of the D-π- dyad, is similar to the molecular machine driven by the redox reaction, but with a facile access and fast response.

摘要

一系列D-π-吡啶鎓化合物被精心设计并合成出来,其中D = -NPh且A = -PyMe通过不同数量的线性苯基间隔基相连。它们的表征显示存在激发态分子内电荷转移(ESICT),这会引发抗衡离子的相应响应。在中等极性和强极性溶剂中,ESICT后发生的快速溶剂弛豫掩盖了抗衡离子效应,呈现出典型的发射溶剂化显色现象。在弱极性溶剂中,ESICT会诱导抗衡阴离子迁移以实现静电稳定,其时间尺度取决于抗衡阴离子的半径、π-连接基的长度以及溶剂的粘度。在甲苯等低粘度有机溶剂中,抗衡阴离子迁移在几十到几百皮秒内发生,导致随时间变化的连续发射,这可以从光谱时间演化中分辨出来。通过化学合成D-π-吡啶鎓-三氧化硫两性离子为此提供了具体证据,其中由于其内部锁定离子对,阴离子迁移受到限制。结果,只能观察到单一发射带。这些全面的研究证明,离子迁移过程对于广泛的ESICT型离子荧光团可能具有重要意义。由D-π-二元体系的光泵浦ESICT引发的这种离子运动类似于由氧化还原反应驱动的分子机器,但具有易于实现和快速响应的特点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2fb/8395631/de607e36a0c2/au0c00107_0009.jpg

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