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手性溶剂诱导的液/固界面同手性分级分子组装体

Chiral Solvent-Induced Homochiral Hierarchical Molecular Assemblies at the Liquid/Solid Interface.

作者信息

Maeda Matsuhiro, De Feyter Steven, Tahara Kazukuni

机构信息

Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku, Kawasaki, Kanagawa 214-8571, Japan.

Division of Molecular Imaging and Photonics, Department of Chemistry, KU Leuven, Celestijnenlaan 200 F, Leuven 3001, Belgium.

出版信息

Langmuir. 2024 Jul 23;40(29):15071-15079. doi: 10.1021/acs.langmuir.4c01430. Epub 2024 Jul 9.

Abstract

We herein investigate the formation of homochiral hierarchical self-assembled molecular networks (SAMNs) via chirality induction by the coadsorption of a chiral solvent at the liquid/graphite interface by means of scanning tunneling microscopy (STM). In a mixture of achiral solvents, 1-hexanoic acid, and 1,2,4-trichlorobenzene, an achiral dehydrobenzo[12]annulene (DBA) derivative with three alkoxy and three hydroxy groups in an alternating manner forms chiral hierarchical triangular cluster structures through dynamic self-sorting. Enantiomorphous domains appear in equal probability. On the other hand, in chiral 2-methyl-1-hexanoic acid as a solvent, this molecule produces (i) homochiral small triangular clusters at a low solute concentration, (ii) a chirality-biased hierarchical structure consisting of triangular cluster structures with different cluster sizes at a medium concentration, and (iii) a dense structure with no chirality bias at a high concentration. We attribute the concentration-dependent degree of the chirality transmission to the number of coadsorbed solvent molecules in the SAMNs and to the difference in nucleus structure and size in the initial stage of the SAMN formation.

摘要

我们在此通过扫描隧道显微镜(STM)研究了在液体/石墨界面通过手性溶剂的共吸附进行手性诱导形成同手性分级自组装分子网络(SAMNs)的过程。在非手性溶剂、1-己酸和1,2,4-三氯苯的混合物中,一种具有三个交替排列的烷氧基和三个羟基的非手性脱氢苯并[12]轮烯(DBA)衍生物通过动态自分类形成手性分级三角形簇结构。对映体畴以相等的概率出现。另一方面,在手性2-甲基-1-己酸作为溶剂的情况下,该分子在低溶质浓度下产生(i)同手性小三角形簇,在中等浓度下产生(ii)由不同簇尺寸的三角形簇结构组成的手性偏向分级结构,在高浓度下产生(iii)无手性偏向的致密结构。我们将手性传递的浓度依赖性程度归因于SAMNs中共吸附溶剂分子的数量以及SAMN形成初始阶段核结构和尺寸的差异。

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