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一种简易分子机器:通过线性供体-π-受体鏻基荧光团的电荷转移实现光触发抗衡离子迁移

A Facile Molecular Machine: Optically Triggered Counterion Migration by Charge Transfer of Linear Donor-π-Acceptor Phosphonium Fluorophores.

作者信息

Belyaev Andrey, Cheng Yu-Hsuan, Liu Zong-Ying, Karttunen Antti J, Chou Pi-Tai, Koshevoy Igor O

机构信息

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

Department of Chemistry, National (Taiwan) University, Taipei, 106, Taiwan.

出版信息

Angew Chem Int Ed Engl. 2019 Sep 16;58(38):13456-13465. doi: 10.1002/anie.201906929. Epub 2019 Aug 9.

Abstract

The D-π-A type phosphonium salts in which electron acceptor (A=- PR ) and donor (D=-NPh ) groups are linked by polarizable π-conjugated spacers show intense fluorescence that is classically ascribed to excited-state intramolecular charge transfer (ICT). Unexpectedly, salts with π=-(C H ) - and -(C H C H )- exhibit an unusual dual emission (F and F bands) in weakly polar or nonpolar solvents. Time-resolved fluorescence studies show a successive temporal evolution from the F to F emission, which can be rationalized by an ICT-driven counterion migration. Upon optically induced ICT, the counterions move from - PR to -NPh and back in the ground state, thus achieving an ion-transfer cycle. Increasing the solvent polarity makes the solvent stabilization dominant, and virtually stops the ion migration. Providing that either D or A has ionic character (by static ion-pair stabilization), the ICT-induced counterion migration should not be uncommon in weakly polar to nonpolar media, thereby providing a facile avenue for mimicking a photoinduced molecular machine-like motion.

摘要

其中电子受体(A = -PR)和供体(D = -NPh)基团通过可极化的π共轭间隔基相连的D-π-A型鏻盐显示出强烈的荧光,这通常归因于激发态分子内电荷转移(ICT)。出乎意料的是,π = -(C₆H₄) - 和 -(C₆H₄CH₂) - 的盐在弱极性或非极性溶剂中表现出不寻常的双重发射(F₁和F₂带)。时间分辨荧光研究表明从F₁发射到F₂发射有连续的时间演变,这可以通过ICT驱动的抗衡离子迁移来解释。在光诱导ICT时,抗衡离子从 -PR迁移到 -NPh并在基态返回,从而实现离子转移循环。增加溶剂极性使溶剂稳定作用占主导,实际上停止了离子迁移。假设D或A具有离子特性(通过静态离子对稳定),ICT诱导的抗衡离子迁移在弱极性到非极性介质中应该并不罕见,从而为模拟光诱导分子机器样运动提供了一条便捷途径。

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