Osakada Kohtaro, Nishihara Yasushi
Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology, 4259 Nagastuta, Midori-ku, Yokohama 226-8503, Japan.
National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba 305-8565, Japan.
Dalton Trans. 2022 Jan 17;51(3):777-796. doi: 10.1039/d1dt02986j.
The Suzuki-Miyaura reaction (the cross-coupling reaction of boronic acids with organic halides catalysed by Pd complexes) has been recognised as a useful synthetic organic reaction that forms a C(sp)-C(sp) bond. The catalytic cycle of the reaction involves the transmetalation of aryl- and alkenylboronic acids with Pd(II) complexes. It migrates the aryl and alkenyl groups of boronic acid to Pd and produces a Pd-C bond. Many studies have investigated the mechanism of transmetalation. They elucidated the mechanism of the organometallic reaction and its role as a fundamental step in catalytic reactions. This perspective reviews studies on the transmetalation of aryl- and alkenylboronic acids with Pd(II) complexes. Emphasis was laid on the structures and chemical properties of the intermediate Pd complexes and the effects of OH on the pathways of the catalytic Suzuki-Miyaura reaction. The reactions of arylboronic acids with Rh(I)-OH complexes were investigated, which are relevant to the mechanism of Rh-catalysed addition of aryl boronic acids to enones and aldehydes. Recent studies on the transmetalation of boronic acids with other late transition metals such as Fe(II), Co(I), Pt(II), Au(III), and Au(I) are presented with the related catalytic reactions and their utilisation in the synthesis of aromatic molecules and π-conjugated materials.
铃木-宫浦反应(钯配合物催化的硼酸与有机卤化物的交叉偶联反应)已被公认为一种有用的有机合成反应,可形成C(sp)-C(sp)键。该反应的催化循环涉及芳基硼酸和烯基硼酸与Pd(II)配合物的转金属化反应。它将硼酸的芳基和烯基迁移至钯上并生成Pd-C键。许多研究对转金属化反应的机理进行了探究。这些研究阐明了有机金属反应的机理及其作为催化反应基本步骤的作用。本文综述了芳基硼酸和烯基硼酸与Pd(II)配合物转金属化反应的研究。重点关注了中间态钯配合物的结构和化学性质,以及OH对催化铃木-宫浦反应路径的影响。研究了芳基硼酸与Rh(I)-OH配合物的反应,这与铑催化芳基硼酸加成到烯酮和醛上的反应机理相关。本文还介绍了硼酸与其他晚期过渡金属(如Fe(II)、Co(I)、Pt(II)、Au(III)和Au(I))转金属化反应的最新研究,以及相关的催化反应及其在芳香分子和π共轭材料合成中的应用。