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八态分子连续切换的双单键旋转光反应

An Eight-State Molecular Sequential Switch Featuring a Dual Single-Bond Rotation Photoreaction.

机构信息

Ludwig-Maximilians Universität München, Department of Chemistry and Center for Integrated Protein Science CIPSM, Butenandtstrasse 5-13, 81377 Munich, Germany.

Friedrich-Alexander Universität Erlangen-Nürnberg, Department of Chemistry and Pharmacy, Nikolaus-Fiebiger-Strasse 10, 91058 Erlangen, Germany.

出版信息

J Am Chem Soc. 2022 Feb 23;144(7):3029-3038. doi: 10.1021/jacs.1c11183. Epub 2022 Feb 14.

Abstract

Typical photoswitches interconvert between two different states by simple isomerization reactions, which represents a fundamental limit for applications. To expand the switching capacity usually different photoswitches have to be linked together leading to strong increase in molecular weight, diminished switching function, and less precision and selectivity of switching events. Herein we present an approach for solving this essential problem with a different photoswitching concept. A basic molecular switch architecture provides precision photoswitching between eight different states via controlled rotations around three adjacent covalent bonds. All eight states can be populated one after another in an eight-step cycle by alternating between photochemical Hula-Twist isomerizations and thermal single-bond rotations. By simply changing solvent and temperature the same switch can also undergo a different cycle instead interconverting just five isomers in a selective sequence. This behavior is enabled through the discovery of an unprecedented photoreaction, a one-photon dual single-bond rotation.

摘要

典型的光开关通过简单的互变异构反应在两种不同状态之间转换,这代表了应用的基本限制。为了扩大切换容量,通常必须将不同的光开关连接在一起,这会导致分子量显著增加、切换功能减弱,以及切换事件的精度和选择性降低。在此,我们提出了一种通过不同的光开关概念来解决这个基本问题的方法。一种基本的分子开关结构通过围绕三个相邻的共价键的受控旋转提供了八种不同状态之间的精确光切换。所有八个状态可以通过在光化学反应的 Hula-Twist 互变异构和热单键旋转之间交替,在一个八步循环中一个接一个地填充。通过简单地改变溶剂和温度,同一个开关也可以经历一个不同的循环,而不是在选择性序列中仅仅互变五个异构体。这种行为是通过发现一种前所未有的光反应——单光子双重单键旋转来实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e32/8874910/4910a037c59e/ja1c11183_0001.jpg

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