Rh催化的吲哚及氮杂吲哚类化合物的C-H键官能团化反应研究
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近年来,过渡金属催化的C-H键活化反应取得了突破性的进展,并已成为有机合成中构建复杂分子的强有力工具。特别是铑催化的C-H键活化方面,因其催化剂突出的催化活性、广泛的底物适用性和官能团容忍性等优点,在C-H键活化反应领域受到了广泛关注。另一方面,吲哚及氮杂吲哚类化合物因其表现出的生物活性及在材料方面的应用前景,使得这类杂环化合物的修饰成为了有机合成化学中的研究热点。因此,本论文开展了铑催化的7-氮杂吲哚及吲哚类化合物的C-H键官能团化反应研究。论文包括以下五个部分: 第一章为前言,简要介绍了C-H键活化的意义及过渡金属参与的C-H键活化的几种途径。同时结合本论文的核心内容,对近年来铑催化的官...
Over the past decades, breakthrough progress has been made in the area of transition-metal-catalyzed C-H bond activation, which has emerged as a powerful tool in organic synthesis for the construction of complex molecules. In particular, rhodium-catalyzed C-H bond activation has attracted increasing attention in recent years owing to the high catalytic efficiency of the catalyst, broad substrate s...
Over the past decades, breakthrough progress has been made in the area of transition-metal-catalyzed C-H bond activation, which has emerged as a powerful tool in organic synthesis for the construction of complex molecules. In particular, rhodium-catalyzed C-H bond activation has attracted increasing attention in recent years owing to the high catalytic efficiency of the catalyst, broad substrate s...
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C-H键活化, 醋酸乙烯酯, 环化, 铑, 7-氮杂吲哚, 炔基化, 炔丙醇, 炔烃, 烯基化, 吲哚, alkenylation, alkyne, alkynylation, annulations, 7-azaindole, C-H activation, indole, propargyl alcohol, rhodium, vinyl acetate