Total Synthesis with Gram-Scale Radical Process: An Inspiration for Pharmaceutical Industry

IF 3.1 3区 化学 Q2 CHEMISTRY, APPLIED Organic Process Research & Development Pub Date : 2024-04-09 DOI:10.1021/acs.oprd.4c00041
Shaomin Fu,  and , Bo Liu*, 
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Abstract

Radical reactions have emerged as indispensable tools in the synthesis of complex molecules. In this perspective, we will discuss selected total syntheses that make use of radical processes in a scale of at least one gram as the essential transformation, to showcase their potential applicability in the industry related to pharmaceuticals and fine chemicals. The discussion is divided into three main sections: metal-catalyzed hydrogen atom transfer (HAT) cyclization, nonmetal-mediated radical cyclization, and metal-catalyzed reductive cross-coupling reactions. Finally, a summary and outlook of this area are highlighted.

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利用革兰氏级辐射过程进行全合成:对制药业的启示
自由基反应已成为合成复杂分子不可或缺的工具。从这个角度出发,我们将讨论一些利用自由基过程进行至少一克规模的基本转化的全合成,以展示它们在制药和精细化工相关行业中的潜在适用性。讨论分为三个主要部分:金属催化的氢原子转移(HAT)环化、非金属介导的自由基环化和金属催化的还原交叉偶联反应。最后,重点总结和展望了这一领域。
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来源期刊
CiteScore
6.90
自引率
14.70%
发文量
251
审稿时长
2 months
期刊介绍: The journal Organic Process Research & Development serves as a communication tool between industrial chemists and chemists working in universities and research institutes. As such, it reports original work from the broad field of industrial process chemistry but also presents academic results that are relevant, or potentially relevant, to industrial applications. Process chemistry is the science that enables the safe, environmentally benign and ultimately economical manufacturing of organic compounds that are required in larger amounts to help address the needs of society. Consequently, the Journal encompasses every aspect of organic chemistry, including all aspects of catalysis, synthetic methodology development and synthetic strategy exploration, but also includes aspects from analytical and solid-state chemistry and chemical engineering, such as work-up tools,process safety, or flow-chemistry. The goal of development and optimization of chemical reactions and processes is their transfer to a larger scale; original work describing such studies and the actual implementation on scale is highly relevant to the journal. However, studies on new developments from either industry, research institutes or academia that have not yet been demonstrated on scale, but where an industrial utility can be expected and where the study has addressed important prerequisites for a scale-up and has given confidence into the reliability and practicality of the chemistry, also serve the mission of OPR&D as a communication tool between the different contributors to the field.
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