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单分子 Mizoroki-Heck 反应的精确电门控

Precise electrical gating of the single-molecule Mizoroki-Heck reaction.

作者信息

Zhang Lei, Yang Chen, Lu Chenxi, Li Xingxing, Guo Yilin, Zhang Jianning, Lin Jinglong, Li Zhizhou, Jia Chuancheng, Yang Jinlong, Houk K N, Mo Fanyang, Guo Xuefeng

机构信息

Beijing National Laboratory for Molecular Sciences, National Biomedical Imaging Centre, College of Chemistry and Molecular Engineering, Peking University, 292 Chengfu Road, Haidian District, Beijing, 100871, P. R. China.

School of Materials Science and Engineering, Peking University, Beijing, 100871, P. R. China.

出版信息

Nat Commun. 2022 Aug 5;13(1):4552. doi: 10.1038/s41467-022-32351-8.

Abstract

Precise tuning of chemical reactions with predictable and controllable manners, an ultimate goal chemists desire to achieve, is valuable in the scientific community. This tunability is necessary to understand and regulate chemical transformations at both macroscopic and single-molecule levels to meet demands in potential application scenarios. Herein, we realise accurate tuning of a single-molecule Mizoroki-Heck reaction via applying gate voltages as well as complete deciphering of its detailed intrinsic mechanism by employing an in-situ electrical single-molecule detection, which possesses the capability of single-event tracking. The Mizoroki-Heck reaction can be regulated in different dimensions with a constant catalyst molecule, including the molecular orbital gating of Pd(0) catalyst, the on/off switching of the Mizoroki-Heck reaction, the promotion of its turnover frequency, and the regulation of each elementary reaction within the Mizoroki-Heck catalytic cycle. These results extend the tuning scope of chemical reactions from the macroscopic view to the single-molecule approach, inspiring new insights into designing different strategies or devices to unveil reaction mechanisms and discover novel phenomena.

摘要

以可预测和可控的方式精确调节化学反应,是化学家渴望实现的最终目标,在科学界具有重要价值。这种可调性对于在宏观和单分子水平上理解和调节化学转化以满足潜在应用场景的需求至关重要。在此,我们通过施加栅极电压实现了单分子 Mizoroki-Heck 反应的精确调节,并通过采用具有单事件跟踪能力的原位电学单分子检测方法,完全破译了其详细的内在机制。在使用恒定催化剂分子的情况下,Mizoroki-Heck 反应可以在不同维度上进行调节,包括 Pd(0) 催化剂的分子轨道门控、Mizoroki-Heck 反应的开/关切换、其周转频率的提升以及 Mizoroki-Heck 催化循环内每个基元反应的调节。这些结果将化学反应的调节范围从宏观视角扩展到了单分子层面,为设计不同策略或装置以揭示反应机制和发现新现象提供了新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bac2/9355990/e7d4d262b569/41467_2022_32351_Fig1_HTML.jpg

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