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通过亚胺缩合反应实现卟啉纳米环的模板导向自组装。

Template-directed self-assembly of porphyrin nanorings through an imine condensation reaction.

作者信息

Xu Ziwei, Ying Xinwen, Li Yi, Dong Xiaoyan, Liu Jiyong, Wang Shuping, Little Marc A, Zhang Dahao, Xie Yongshu, Zhang Zibin, Yu Ling, Huang Feihe, Li Shijun

机构信息

College of Material, Chemistry and Chemical Engineering, Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education Hangzhou Normal University Hangzhou 311121 P. R. China

Stoddart Institute of Molecular Science, Department of Chemistry, Zhejiang University Hangzhou 310027 P. R. China.

出版信息

Chem Sci. 2025 Feb 13;16(12):5166-5173. doi: 10.1039/d4sc08569h. eCollection 2025 Mar 19.

Abstract

Template-directed self-assembly has proven to be an extremely effective method for the precise fabrication of biomacromolecules in natural systems, while artificial template-directed self-assembly systems for the preparation of highly intricate molecules remain a great challenge. In this article, we report the template-directed self-assembly of porphyrin nanorings with different cavity sizes from a tetraaldehyde-derived Zn(ii) porphyrin and a diamine precursor through an imine condensation reaction. Up to 9 or 18 precursor molecules self-assemble together to produce a triporphyrin nanoring and a hexaporphyrin nanoring in one step, with the assistance of a tripyridine or hexapyridine template, respectively. The imine-linked porphyrin nanorings are further modified by reduction and acylation reactions to obtain more stable nanorings. The open cavities of porphyrin rings enable them to act as effective hosts to encapsulate fullerenes (C and C). This work presents a highly efficient template-directed self-assembly strategy for the construction of complicated molecules by using dynamic covalent chemistry of imine bond formation.

摘要

模板导向的自组装已被证明是在天然系统中精确制造生物大分子的一种极其有效的方法,而用于制备高度复杂分子的人工模板导向自组装系统仍然是一个巨大的挑战。在本文中,我们报道了通过亚胺缩合反应,由四醛基衍生的锌(II)卟啉和二胺前体模板导向自组装不同空腔尺寸的卟啉纳米环。在三吡啶或六吡啶模板的辅助下,分别有多达9个或18个前体分子自组装在一起,一步生成三卟啉纳米环和六卟啉纳米环。通过还原和酰化反应对亚胺连接的卟啉纳米环进行进一步修饰,以获得更稳定的纳米环。卟啉环的开放空腔使其能够作为有效的主体来封装富勒烯(C和C)。这项工作提出了一种高效的模板导向自组装策略,用于通过亚胺键形成的动态共价化学构建复杂分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e800/11921125/7fca38bd1c23/d4sc08569h-s1.jpg

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