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基于亚苯基乙炔和全甲基化α-环糊精的具有固定绝缘和确定长度的分子导线的程序化合成。

Programmed Synthesis of Molecular Wires with Fixed Insulation and Defined Length Based on Oligo(phenylene ethynylene) and Permethylated α-Cyclodextrins.

作者信息

Masai Hiroshi, Fujihara Tetsuaki, Tsuji Yasushi, Terao Jun

机构信息

Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University, Kyoto, 615-8510, Japan.

Present address: Graduate School of Frontier Sciences, The University of Tokyo, Chiba, 277-8561, Japan.

出版信息

Chemistry. 2017 Oct 26;23(60):15073-15079. doi: 10.1002/chem.201701428. Epub 2017 Jul 19.

Abstract

The development of new tuning methods for π-conjugated insulated molecular wires with strictly defined axle lengths as well as positions and degrees of macrocycle coverage would provide unprecedented insight into insulation effects in functionalized materials. Herein, iterative reactions of oligo(phenylene ethynylene) (OPE) linked with permethylated α-cyclodextrins were carried out to fabricate insulated molecular wires with a defined length and insulation in desired areas. Insulated OPEs were elongated in a stepwise manner by performing sequential coupling/deprotection reactions. The insulated areas on the OPE units in each expansion step were selectively controlled by means of programmed solvent conditions (high/low polarity). Moreover, a completely insulated OPE (up to a linked [11]rotaxane) with high structural regularity and high covering ratio was synthesized by appropriate tuning of the Pd catalyst and an extension unit bearing a traceless capping unit based on a tert-butyldimethylsilyl group. This strategy may guide the development of the selective synthesis of fully insulated, partially insulated, and uninsulated molecular wires with well-defined lengths and covered/uncovered areas.

摘要

开发具有严格定义的轴长以及大环覆盖位置和程度的π共轭绝缘分子线的新调谐方法,将为功能化材料中的绝缘效应提供前所未有的见解。在此,进行了与全甲基化α-环糊精连接的寡聚(亚苯基乙炔)(OPE)的迭代反应,以制备具有确定长度和所需区域绝缘性的绝缘分子线。通过进行连续的偶联/脱保护反应,使绝缘的OPE逐步伸长。在每个扩展步骤中,通过程序控制的溶剂条件(高/低极性)选择性地控制OPE单元上的绝缘区域。此外,通过适当调节钯催化剂和带有基于叔丁基二甲基硅烷基的无痕封端单元的延伸单元,合成了具有高结构规整性和高覆盖率的完全绝缘的OPE(直至连接的[11]轮烷)。该策略可能会指导选择性合成具有明确长度和覆盖/未覆盖区域的完全绝缘、部分绝缘和未绝缘分子线的发展。

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