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单分子结中有机锡化合物形成共价金 - 碳接触及碳 - 碳偶联反应

Covalent Au-C Contact Formation and C-C Homocoupling Reaction from Organotin Compounds in Single-Molecule Junctions.

作者信息

Guo Weiyi, Wu Yuhao, Xie Chaochao, Tan Xuefeng, Lu Zhenpin, Li Haixing

机构信息

Department of Physics, City University of Hong Kong, Kowloon 999077, Hong Kong SAR, China.

Department of Chemistry, City University of Hong Kong, Kowloon 999077, Hong Kong SAR, China.

出版信息

J Am Chem Soc. 2024 Oct 2;146(39):26687-26693. doi: 10.1021/jacs.4c03925. Epub 2024 Sep 22.

Abstract

Formation of new chemical species has been achieved under an electric field by the use of the scanning tunneling microscope break junction technique, yet simultaneous implementation of catalytic reactions both at the organic/metal interface and in the bulk solution remains a challenging task. Herein, we show that -butyl-substituted organotin-terminated benzene undergoes both an efficient cleavage of the terminal tributyltin group to form a covalent Au-C bond and a homocoupling reaction to yield biphenyl product when subjected to an electric field in the vicinity to Au electrodes. By using ex situ characterization of high-performance liquid chromatography with an UV-vis detector, we demonstrate that the homocoupling reaction can occur with high efficiency under an extremely low tip bias voltage of ∼5 mV. Additionally, we show that the efficiency of the homocoupling reaction varies significantly in different solvents; the choice of the solvent proves to be one of the methods for modulating this reaction. By synthesizing and testing varied molecular backbone structures, we show that an extended biphenyl backbone undergoes homocoupling to form a quarterphenylene backbone, and the C-C coupling reactions are prohibited when additional aurophilic or bulky chemical groups that exhibit a steric blockage are introduced.

摘要

通过扫描隧道显微镜断结技术在电场作用下已实现新化学物种的形成,但在有机/金属界面和本体溶液中同时实现催化反应仍然是一项具有挑战性的任务。在此,我们表明,当在金电极附近施加电场时,丁基取代的有机锡封端苯既会发生末端三丁基锡基团的有效裂解以形成共价金 - 碳键,又会发生均偶联反应生成联苯产物。通过使用配备紫外 - 可见检测器的高效液相色谱进行非原位表征,我们证明在约5 mV的极低针尖偏置电压下,均偶联反应能够高效发生。此外,我们表明均偶联反应在不同溶剂中的效率差异显著;溶剂的选择被证明是调节该反应的方法之一。通过合成和测试不同的分子主链结构,我们表明扩展的联苯主链会发生均偶联形成四亚苯基主链,并且当引入额外的亲金或庞大的具有空间位阻的化学基团时,碳 - 碳偶联反应会被禁止。

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