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由磷属元素键导向的自组装反向双层结构在溶液中形成囊泡。

Self-assembled reversed bilayers directed by pnictogen bonding to form vesicles in solution.

机构信息

Department of Chemistry and Biochemistry, Texas Tech University, Box 41061, Lubbock, Texas 79409-1061, USA.

出版信息

Chem Commun (Camb). 2018 Aug 7;54(64):8849-8852. doi: 10.1039/c8cc05187a.

Abstract

Artificial vesicles can aid in the study and understanding of biological cell membranes. This study employs pnictogen bonding to actively direct the self-assembly of a true reversed bilayer. Antimony(iii) alkoxide cages that self-assemble through multiple strong SbO interactions propagate in two dimensions to form a reverse bilayer structure in the solid state. Long alkyl tails allow these reverse bilayers to be processed into vesicles in solution that are a reverse of biological cell membranes.

摘要

人工囊泡可以帮助研究和理解生物细胞膜。本研究采用磷键合作用主动指导真正反向双层的自组装。通过多个强 SbO 相互作用自组装的锑(III)烷氧基笼在二维方向上延伸,在固态中形成反向双层结构。长烷基尾链使这些反向双层能够在溶液中加工成囊泡,其结构与生物细胞膜相反。

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