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柔性分子折叠二聚体中的竞争性电荷分离途径

Competitive Charge Separation Pathways in a Flexible Molecular Folda-Dimer.

作者信息

Thakur Kalyani, Datta Saptarshi, Blom Paul W M, Chaudhuri Debangshu, Ramanan Charusheela

机构信息

Max Planck Institute for Polymer Research, Ackermannweg 10, Mainz 55128, Germany.

Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Kolkata, Mohanpur 741246, India.

出版信息

J Phys Chem B. 2024 Feb 22;128(7):1760-1770. doi: 10.1021/acs.jpcb.3c07134. Epub 2024 Feb 10.

Abstract

We report the photophysical properties of a molecular folda-dimer system , where the electron-donating ,-diethylaniline (AnEt) moiety bridges two electron-accepting perylene diimide (PDI) chromophores. The conformationally flexible adopts either an open (two PDIs far apart) or folded (two PDIs within π-stacking distance) conformation, depending on the solvent environment. We characterized the photoinduced charge separation dynamics of both open and folded forms in solvents of varying polarity. The open form undergoes charge separation to give (Bridge electron transfer) independent of solvent polarity. The folded form exhibits two charge separation photoproducts, yielding both and , the latter of which is formed via symmetry-breaking charge separation (SBCS) between the two π-stacked PDI chromophores. Our results further indicate that the conformational flexibility of the folda-dimer leads to unexpected excimer formation in some open form conditions. In contrast, no excimer formation is observed in the folded form, indicating that this geometry preferentially yields the SBCS instead. Our results provide insight into how conformationally flexible folda-dimer systems can be designed and built to tune competitive photophysical pathways.

摘要

我们报道了一种分子折叠二聚体体系的光物理性质,其中供电子的二乙苯胺(AnEt)部分连接着两个受电子的苝二酰亚胺(PDI)发色团。根据溶剂环境,构象灵活的体系会采取开放构象(两个PDI相距较远)或折叠构象(两个PDI处于π堆积距离内)。我们表征了在不同极性溶剂中开放形式和折叠形式的光诱导电荷分离动力学。开放形式发生电荷分离生成(桥电子转移),与溶剂极性无关。折叠形式表现出两种电荷分离光产物,生成 和 ,后者是通过两个π堆积的PDI发色团之间的对称破缺电荷分离(SBCS)形成的。我们的结果进一步表明,折叠二聚体的构象灵活性会导致在某些开放形式条件下意外形成激基缔合物。相比之下,在折叠形式中未观察到激基缔合物形成,这表明这种几何结构优先产生SBCS。我们的结果为如何设计和构建构象灵活的折叠二聚体体系以调节竞争性光物理途径提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90b7/10895663/345a0b3874b1/jp3c07134_0001.jpg

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