支架诱导的化学空间性质调制

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Jingyao Li, Vincenzo Di Lorenzo, Pravin Patil, Angel J. Ruiz-Moreno, Katarzyna Kurpiewska, Justyna Kalinowska-Tłuścik, Marco A. Velasco-Velázquez, Alexander Dömling*
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引用次数: 4

摘要

化学空间的物理化学性质转换对化合物的优化具有重要意义,例如生物活性的优化。环化是控制3D和其他属性的关键方法。一个两步的方法,其中包括一个多组分的反应,然后环化,报道了实现从基本部分到电荷中性环衍生物的转变。一系列多取代恶唑烷酮、恶唑烷酮和恶唑酮及其硫和硫衍生物在温和的条件下以高收率合成。像其他一些方法一样,MCR和环化允许将一个大的化学空间集体转化为具有不同性质的相关化学空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Scaffolding-Induced Property Modulation of Chemical Space

Scaffolding-Induced Property Modulation of Chemical Space

Physicochemical property switching of chemical space is of great importance for optimization of compounds, for example, for biological activity. Cyclization is a key method to control 3D and other properties. A two-step approach, which involves a multicomponent reaction followed by cyclization, is reported to achieve the transition from basic moieties to charge neutral cyclic derivatives. A series of multisubstituted oxazolidinones, oxazinanones, and oxazepanones as well as their thio and sulfur derivatives are synthesized from readily available building blocks with mild conditions and high yields. Like a few other methods, MCR and cyclization allow for the collective transformation of a large chemical space into a related one with different properties.

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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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