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在水溶液中通过阴离子结合和葫芦脲[8]包合控制偶氮氮杂冠醚的光致异构化。

Control of Photoisomerization of an Azoazacryptand by Anion Binding and Cucurbit[8]uril Encapsulation in an Aqueous Solution.

机构信息

Faculty of Natural Sciences, Technische Universität Chemnitz, 09107 Chemnitz, Germany.

Peoples' Friendship University of Russia (RUDN University), 117198 Moscow, Russia.

出版信息

J Org Chem. 2020 Jul 17;85(14):9255-9263. doi: 10.1021/acs.joc.0c01260. Epub 2020 Jul 6.

Abstract

Control of isomerization of a receptor bearing multiple light-switchable subunits in a confined space is critical for the design of synthetic molecular machines. Toward this goal, a new azacryptand containing three azobenzene subunits has been developed, and its photoisomerization in an aqueous solution has been studied depending on anion coordination and recognition by a larger host-cucurbit[8]uril (CB[8]). The cryptand in its hexaprotonated form shows considerable affinity for fluoride and perchlorate, which in turn affects the isomer distribution of the receptor under UV-light irradiation, stabilizing the isomers of the cryptand with -configurations. CB[8] was found to be able to encapsulate the isomers of the cryptand by forming a Matryoshka-type complex. The irradiation of a 10:1 CB[8]-cryptand mixture has led to a selective conversion of the cryptand to the ,, isomer inside CB[8]. It has been demonstrated that the addition of fluoride to the resulted complex induces the release of the cryptand as a major ,, isomer, while other studied anions were ineffective in this reaction. To our knowledge, this work presents a first example of a host-controlled photoisomerization of an anion receptor bearing multiple switching azobenzenes that model the function of naturally occurring chaperones.

摘要

在受限空间中控制具有多个光可切换亚基的受体的异构化对于设计合成分子机器至关重要。为此,设计并合成了一种新型的包含三个偶氮苯亚基的氮杂环蕃,并研究了其在水溶液中的光致异构化行为,这取决于阴离子配位和与较大主体瓜环(CB[8])的识别。在六质子化形式下,该穴醚对氟化物和高氯酸盐表现出相当大的亲和力,这反过来又影响了受体在紫外光照射下的异构体分布,稳定了具有 - 构型的受体异构体。发现 CB[8]能够通过形成套娃型配合物来包封穴醚的异构体。对 10:1 CB[8]-穴醚混合物的辐照导致穴醚选择性转化为 CB[8]内部的,,异构体。已经证明,向所得配合物中添加氟化物会导致穴醚作为主要的,,异构体释放,而其他研究的阴离子在该反应中无效。据我们所知,这项工作首次展示了一种具有多个光开关偶氮苯的阴离子受体的主体控制光致异构化的例子,该受体模拟了天然分子伴侣的功能。

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