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[选择性金属化与固相有机金属化学]

[Selective metalation and solid phase organometallic chemistry].

作者信息

Kondo Yoshinori

机构信息

Graduate School of Pharmaceutical Sciences, Tohoku University, Aobayama, Aoba-ku, Sendai 980-8578, Japan.

出版信息

Yakugaku Zasshi. 2002 Nov;122(11):919-27. doi: 10.1248/yakushi.122.919.

Abstract

Recently, solid-phase synthesis has been recognized as an important methodology for combinatorial chemistry or automated synthesis directed at drug discovery. Various synthetic methodologies have been applied to solid-phase synthesis, although it appears that organometallic chemistry in this area is still being explored. In solution-phase chemistry, organometallic reagents have been utilized for various molecular transformations, especially selective carbon-carbon bond formation. Metallation chemistry is considered to be an important area of organometallic chemistry. Lithiation has been most widely used for metallation, although the reaction conditions must be strictly controlled to avoid various side reactions. Chemoselective transformation was carried out using the newly developed halogen-zinc exchange reaction of aromatic halides using lithium trialkylzincate. This reaction shows high chemoselectivity and compatibility with alkoxycarbonyl or nitro groups. A highly selective hydrogen-zinc exchange reaction was also developed. In solid-phase organometallic chemistry, an immobilized iodobenzoate was used as a substrate and the halogen-zinc exchange reaction was investigated. The exchange reaction was found to proceed smoothly. As an application of the reaction, various transformations on polymer support were investigated using transmetallation and cyclization. The palladium-catalyzed coupling reaction on polymer support was also investigated, and new cyclization for condensed heteroaromatic compounds was developed. The methodology described here is considered to contribute to expanding the application spectrum of solid-phase organometallic chemistry.

摘要

最近,固相合成已被公认为是用于组合化学或针对药物发现的自动化合成的一种重要方法。各种合成方法已应用于固相合成,尽管该领域的有机金属化学似乎仍在探索之中。在溶液相化学中,有机金属试剂已被用于各种分子转化,尤其是选择性碳-碳键的形成。金属化化学被认为是有机金属化学的一个重要领域。锂化已最广泛地用于金属化,尽管必须严格控制反应条件以避免各种副反应。使用新开发的芳基卤化物与三烷基锌酸锂的卤素-锌交换反应进行了化学选择性转化。该反应显示出高化学选择性以及与烷氧羰基或硝基的相容性。还开发了一种高度选择性的氢-锌交换反应。在固相有机金属化学中,使用固定化的碘苯甲酸酯作为底物并研究了卤素-锌交换反应。发现交换反应进行得很顺利。作为该反应的应用,利用金属转移和环化研究了聚合物载体上的各种转化。还研究了聚合物载体上钯催化的偶联反应,并开发了稠合杂芳族化合物的新环化反应。这里描述的方法被认为有助于扩大固相有机金属化学的应用范围。

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