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螺旋状富勒烯排列在超分子聚合物主链中。

Helically Organized Fullerene Array in a Supramolecular Polymer Main Chain.

机构信息

Graduate School of Advanced Science and Engineering, Hiroshima University, 1-3-1, Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8526, Japan.

出版信息

J Am Chem Soc. 2021 Mar 24;143(11):4339-4345. doi: 10.1021/jacs.0c13326. Epub 2021 Mar 11.

Abstract

To date, supramolecular chemistry techniques have been applied to fullerene polymer synthesis, enabling the development of main-chain fullerene polymers whose primary structure is well regulated, including linear, dendritic, and net-like fullerene arrays. These research achievements have led to an intriguing scientific challenge to create main-chain fullerene polymers with higher structural regulation. Here, we report the fabrication of a helically organized fullerene array based on the supramolecular polymerization of chiral ditopic tetrakiscalix[5]arene hosts and a dumbbell-shaped fullerene. The molecular association between the chiral hosts and the dumbbell-shaped fullerene resulted in sizable supramolecular polymers in solution, with the highest degree of polymerization of more than 32. The achiral dumbbell-shaped fullerene exhibited circular dichroism in the π-π* transition bands arising from the fullerene moieties through supramolecular polymerization. End-capping experiments of the supramolecular helical polymers showed that the chirally twisted conformation of the dumbbell-shaped fullerene was directed by supramolecular polymerization. Finally, the helical morphology of the supramolecular polymer chain was visualized by atomic force microscopy. The successful development of helical main-chain fullerene polymers would break new ground in fullerene chemistry.

摘要

迄今为止,超分子化学技术已被应用于富勒烯聚合物的合成,使得主链富勒烯聚合物的发展成为可能,其主链结构得到了很好的调控,包括线性、树枝状和网状富勒烯阵列。这些研究成果提出了一个有趣的科学挑战,即创造具有更高结构调控的主链富勒烯聚合物。在这里,我们报告了一种基于手性双齿四冠[5]芳烃主体和哑铃形富勒烯的超分子聚合来制备螺旋状富勒烯阵列。手性主体与哑铃形富勒烯之间的分子缔合导致在溶液中形成了大量的超分子聚合物,其聚合度最高可达 32 以上。非手性哑铃形富勒烯在通过超分子聚合产生的富勒烯部分的π-π*跃迁带中表现出圆二色性。超分子螺旋聚合物的端封实验表明,哑铃形富勒烯的手性扭曲构象是由超分子聚合引导的。最后,通过原子力显微镜观察到超分子聚合物链的螺旋形态。螺旋状主链富勒烯聚合物的成功开发将为富勒烯化学开辟新天地。

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