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具有热调节选择性结合偏好的自组装类轮烷笼用于高纯度碳和碳的纯化

Self-Assembled Carcerand-like Cage with a Thermoregulated Selective Binding Preference for Purification of High-Purity C and C.

作者信息

Sun Weidong, Wang Ying, Ma Lishuang, Zheng Lu, Fang Weihai, Chen Xuebo, Jiang Hua

机构信息

Key Laboratory of Theoretical and Computational Photochemistry and Key Laboratory of Radiopharmaceuticals, Ministry of Education, College of Chemistry , Beijing Normal University , Beijing 100875 , China.

出版信息

J Org Chem. 2018 Dec 7;83(23):14667-14675. doi: 10.1021/acs.joc.8b02674. Epub 2018 Nov 16.

Abstract

Fullerene molecules have attracted considerable interest because of the unique curved aromatic π-conjugated systems. However, the complicated and costly technologies for purification of highly pure fullerenes hamper easy access to these attractive molecules and consequently limit most of the fullerene applications. Here, we report the discovery of a carcerand-like cage acting as a stand-alone host for efficient separation and purification of C and C from fullerene soot. The cage, built through the self-assembly of metal coordination, is capable of quantitatively encapsulating fullerenes C and C. The fullerene complexes are highly stable at high temperatures because of the small crevices with precisely defined sizes, multiple favorable CH-π interactions, and concave-convex aromatic interaction between fullerenes and corannulenes. Importantly, the carcerand-like cage shows a temperature-dependent selective binding preference for C over C, which allows us to develop an efficient and green procedure for isolating C and C with high purity and low mass loss from fullerene soot without the help of recrystallization or high-performance liquid chromatography.

摘要

富勒烯分子因其独特的弯曲芳香π共轭体系而备受关注。然而,用于纯化高纯度富勒烯的复杂且昂贵的技术阻碍了人们轻松获取这些有吸引力的分子,从而限制了大多数富勒烯的应用。在此,我们报告发现了一种类轮烷笼,它可作为独立主体,用于从富勒烯烟灰中高效分离和纯化C₆₀和C₇₀。该笼通过金属配位自组装构建而成,能够定量包封富勒烯C₆₀和C₇₀。由于具有尺寸精确界定的小缝隙、多种有利的C-H-π相互作用以及富勒烯与碗烯之间的凹凸芳香相互作用,富勒烯配合物在高温下高度稳定。重要的是,类轮烷笼对C₇₀表现出温度依赖性的选择性结合偏好,这使我们能够开发一种高效且绿色的方法,在无需重结晶或高效液相色谱帮助的情况下,从富勒烯烟灰中以高纯度和低质量损失分离出C₆₀和C₇₀。

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