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由超分子聚合介导的溶剂控制/异构化[2 + 2]光环加成反应

Solvent-controlled / isomerization [2 + 2] photocycloaddition mediated by supramolecular polymerization.

作者信息

Dünnebacke Torsten, Kartha Kalathil K, Wiest Johannes M, Albuquerque Rodrigo Q, Fernández Gustavo

机构信息

Organisch-Chemisches Institut, Westfälische-Wilhelms Universität Münster Corrensstraße, 40 48149 Münster Germany

出版信息

Chem Sci. 2020 Sep 11;11(38):10405-10413. doi: 10.1039/d0sc03442h.

Abstract

Control over the photochemical outcome of photochromic molecules in solution represents a major challenge, as photoexcitation often leads to multiple competing photochemical and/or supramolecular pathways resulting in complex product mixtures. Herein, we demonstrate precise and efficient control over the photochemical behaviour of cyanostilbenes in solution using a straightforward solvent-controlled approach based on supramolecular polymerization. To this end, we designed a π-extended cyanostilbene bolaamphiphile that exhibits tuneable solvent-dependent photochemical behaviour. Photoirradiation of the system in a monomeric state (in organic solvents) exclusively leads to a highly reversible and efficient / photoisomerization, whereas a nearly quantitative [2 + 2] photocycloaddition into a single cyclobutane ( head-to-tail) occurs in aqueous solutions. These results can be rationalized by a highly regular and preorganized antiparallel J-type arrangement of the cyanostilbene units that is driven by aqueous supramolecular polymerization. The presented concept demonstrates a novel approach towards solvent-selective and environmentally friendly photochemical transformations, which is expected to broaden the scope of supramolecular polymerization.

摘要

控制溶液中光致变色分子的光化学结果是一项重大挑战,因为光激发常常会导致多种相互竞争的光化学和/或超分子途径,从而产生复杂的产物混合物。在此,我们展示了一种基于超分子聚合的直接溶剂控制方法,可对溶液中氰基芪的光化学行为进行精确而有效的控制。为此,我们设计了一种π-扩展的氰基芪双性分子,它表现出可调节的溶剂依赖性光化学行为。该体系在单体状态(在有机溶剂中)进行光辐照时,只会发生高度可逆且高效的光异构化,而在水溶液中则几乎定量地发生[2 + 2]光环加成反应,生成单一的环丁烷(头对头)。这些结果可以通过由水性超分子聚合驱动的氰基芪单元高度规则且预组织的反平行J型排列来解释。所提出的概念展示了一种实现溶剂选择性和环境友好型光化学转化的新方法,有望拓宽超分子聚合的范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb26/8162386/808a5eac91d0/d0sc03442h-f1.jpg

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