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按需进行的碳-卤键电化学活化:通向由非共价相互作用引发的原子经济性基团转移反应

Electrochemical Activation of the C-X Bond on Demand: Access to the Atom Economic Group Transfer Reaction Triggered by Noncovalent Interaction.

作者信息

Sen Partha Pratim, Roy Vishal Jyoti, Raha Roy Sudipta

机构信息

Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

J Org Chem. 2022 Aug 5;87(15):9551-9564. doi: 10.1021/acs.joc.2c00529. Epub 2022 Jul 11.

Abstract

An atom economic method demonstrates the involvement of noncovalent interaction via hydrogen or halogen bonding interaction in triggering paired electrolysis for the group transfer reactions. Specifically, this method demonstrated the bromination of several aromatic and heteroaromatic compounds through the activation of the C(sp)-Br bond of organic-bromo derivatives on demand. This electrochemical protocol is mild, and mostly no additional electrolyte is needed, which makes the workup process straightforward. Unlike the existing regioselective monobromination methods, this work utilizes a relatively small amount (1.2 equiv) of bromine surrogates that releases bromine on demand under the electrochemical condition and after completion of the reaction generates acetophenone as a useful byproduct. Green metrics indicate this protocol has a very good atom efficiency with an -factor of 26.86 kg of waste/1 kg of product. In addition to the scale-up process, this strategy could be extended to the transfer of chlorine and thioaryl units. An extensive mechanistic study is accomplished to validate the hypothesis of noncovalent interaction using computational, spectroscopic, and cyclic voltammetry studies. Finally, the applicability of this newly developed nonbonding interaction to trigger paired electrolysis was extended to the chemoselective debromination of several dihalo organic compounds.

摘要

一种原子经济方法表明,通过氢或卤素键相互作用的非共价相互作用参与引发用于基团转移反应的成对电解。具体而言,该方法通过按需激活有机溴衍生物的C(sp)-Br键,证明了几种芳香族和杂芳香族化合物的溴化反应。这种电化学方法温和,且大多无需额外的电解质,这使得后处理过程简单直接。与现有的区域选择性单溴化方法不同,这项工作使用了相对少量(1.2当量)的溴替代物,其在电化学条件下按需释放溴,并且在反应完成后生成苯乙酮作为有用的副产物。绿色指标表明该方法具有非常好的原子效率,废物因子为每1千克产物产生26.86千克废物。除了放大过程外,该策略还可扩展到氯和硫芳基单元的转移。通过计算、光谱和循环伏安法研究完成了广泛的机理研究,以验证非共价相互作用的假设。最后,这种新开发的用于引发成对电解的非键相互作用的适用性扩展到了几种二卤有机化合物的化学选择性脱溴反应。

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