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电化学活性核修饰的扩展卟啉类化合物中的拓扑多样性。

Topological Diversity in Electrochemically Active Core-Modified Expanded Porphyrinoids.

作者信息

Udaya Hosahalli S, Mishra Vishnu, Gopalakrishna Tullimilli Y, Anand Venkataramanarao G

机构信息

Department of Chemistry, Indian Institute of Science Education and Research, Pune, Maharashtra 411008, India.

出版信息

Org Lett. 2023 Sep 15;25(36):6628-6632. doi: 10.1021/acs.orglett.3c02328. Epub 2023 Sep 5.

Abstract

Thiophene-based expanded porphyrinoids undergo a transition from a planar conformation to a twisted conformation upon a systematic increase in the number of thiophene units. Octaphyrin, with 40π electrons, displayed temperature-dependent interconversion between planar and nonplanar conformations in the solution state, in contrast to the rigid planar conformation in the solid state. 60π-dodecaphyrin and 70π-tetradecaphyrin have the maximum number of π-electrons for 12- and 14-heterocycle porphyrinoids, respectively. Spectro-electrochemical measurements confirmed facile reversible two-electron oxidation and the unstable radical cation intermediate in these systems.

摘要

随着噻吩单元数量的系统性增加,基于噻吩的扩展卟啉类化合物会从平面构象转变为扭曲构象。具有40π电子的八卟啉在溶液状态下呈现出平面构象和非平面构象之间的温度依赖性相互转化,这与固态下的刚性平面构象形成对比。60π-十二卟啉和70π-十四卟啉分别是12元和14元杂环卟啉类化合物中具有最大π电子数的。光谱电化学测量证实了这些体系中易于进行的可逆双电子氧化以及不稳定的自由基阳离子中间体。

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