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用于催化芳基卤化物键活化的、来自还原有机烃的机械化学固态单电子转移

Mechanochemical solid state single electron transfer from reduced organic hydrocarbon for catalytic aryl-halide bond activation.

作者信息

Biswas Amit, Bhunia Anup, Mandal Swadhin K

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research-Kolkata Mohanpur-741246 India

出版信息

Chem Sci. 2023 Feb 2;14(10):2606-2615. doi: 10.1039/d2sc06119h. eCollection 2023 Mar 8.

Abstract

Solid-state radical generation is an attractive but underutilized methodology in the catalytic strong bond activation process, such as the aryl-halide bond. Traditionally, such a process of strong bond activation relied upon the use of transition metal complexes or strongly reducing photocatalysts in organic solvents. The generation of the aryl radical from aryl halides in the absence of transition-metal or external stimuli, such as light or cathodic current, remains an elusive process. In this study, we describe a reduced organic hydrocarbon, which can act as a super reductant in the solid state to activate strong bonds by solid-state single electron transfer (SSSET) under the influence of mechanical energy leading to a catalytic strategy based on the mechano-SSSET or mechanoredox process. Here, we investigate the solid-state synthesis of the super electron donor phenalenyl anion in a ball mill and its application as an active catalyst in strong bond (aryl halide) activation. Aryl radicals generated from aryl halides by employing this strategy are competent for various carbon-carbon bond-forming reactions under solvent-free and transition metal-free conditions. We illustrate this approach for partially soluble or insoluble polyaromatic arenes in accomplishing solid-solid C-C cross-coupling catalysis, which is otherwise difficult to achieve by traditional methods using solvents.

摘要

在催化强键活化过程中,如芳基卤化物键的活化,固态自由基生成是一种有吸引力但未得到充分利用的方法。传统上,这种强键活化过程依赖于在有机溶剂中使用过渡金属配合物或强还原性光催化剂。在没有过渡金属或外部刺激(如光或阴极电流)的情况下,从芳基卤化物生成芳基自由基仍然是一个难以捉摸的过程。在本研究中,我们描述了一种还原态有机烃,它在固态下可作为超级还原剂,在机械能的影响下通过固态单电子转移(SSSET)活化强键,从而形成基于机械-SSSET或机械氧化还原过程的催化策略。在此,我们研究了在球磨机中固态合成超级电子供体菲烯基阴离子及其作为强键(芳基卤化物)活化的活性催化剂的应用。通过采用这种策略从芳基卤化物生成的芳基自由基能够在无溶剂和无过渡金属条件下进行各种碳-碳键形成反应。我们展示了这种方法用于部分可溶或不溶的多环芳烃,以实现固-固碳-碳交叉偶联催化,而这是传统的溶剂法难以实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a7e/9993847/f6767014d820/d2sc06119h-f1.jpg

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