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四硫富瓦烯-杯[4]吡咯:一种用于缺电子平面和球形客体的多功能合成受体。

Tetrathiafulvalene-calix[4]pyrrole: a versatile synthetic receptor for electron-deficient planar and spherical guests.

机构信息

Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230, Odense M, Denmark.

出版信息

Org Biomol Chem. 2019 Mar 6;17(10):2594-2613. doi: 10.1039/c8ob02514b.

Abstract

The first tetrakis-tetrathiafulvalene-calix[4]pyrrole (TTF-C[4]P) was reported in 2004. Early on it and related π-extended TTF-C[4]Ps were found to function as both anion receptors and as hosts for planar electron deficient neutral guests, including nitroaromatic explosives. Anion binding was found to occur with a 1 : 1 binding stoichiometry and to stabilise the cone C[4]P conformation, whereas planar electron deficient guests were bound in a cooperative 1 : 2 fashion to the 1,3-alternate conformer. Addition of strongly complexing anions was found to trigger release of the electron deficient guests concurrent with a conformational change to the cone form. Subsequent studies led to the discovery of anion-induced complexation with C60, and the finding that the resulting complexes would support fast photoinduced electron transfer events. Synthetic advances then led to the preparation of nonsymmetric TTF-C[4]Ps where a single moiety organises the receptor in either the 1,3-alternate conformation or the partial cone conformation, thus modifying both selectivity and sensitivity. TTF-C[4]P-based stimulus responsive systems, that rely on anions and cations as controlling inputs, have also been developed and studied in recent years. This review provides a summary of TTF-C[4]P-related chemistry.

摘要

首个四并四噻吩-杯[4]吡咯(TTF-C[4]P)于 2004 年被报道。早期,它和相关的π-扩展 TTF-C[4]P 被发现既可以作为阴离子受体,又可以作为平面缺电子中性客体的主体,包括硝基芳香族爆炸物。发现阴离子结合发生在 1:1 的结合化学计量比,并稳定了锥体 C[4]P 构象,而平面缺电子客体则以协同的 1:2 方式结合到 1,3-交替构象。添加强配位阴离子被发现会触发缺电子客体的释放,同时构象发生变化为锥体形式。随后的研究导致了发现与 C60 的阴离子诱导络合,以及发现所得复合物将支持快速光诱导电子转移事件。随后的合成进展导致了非对称 TTF-C[4]P 的制备,其中单个部分将受体组织成 1,3-交替构象或部分锥体构象,从而改变选择性和敏感性。基于 TTF-C[4]P 的刺激响应系统,依赖于阴离子和阳离子作为控制输入,近年来也得到了开发和研究。这篇综述提供了 TTF-C[4]P 相关化学的总结。

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