期刊
TRENDS IN CHEMISTRY
卷 4, 期 6, 页码 540-553出版社
CELL PRESS
DOI: 10.1016/j.trechm.2022.03.004
关键词
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资金
- National Science Foundation [CHE-2108197]
- Natural Science Foundation of Shandong Province [ZR2021MB033]
- Innovative Research Programs of Higher Education of Shandong Province [2019KJC009]
- Incubation Program of Youth Innovation of Shandong Province
Alkyne metathesis (AM), a relative of alkene metathesis, has gained significant attention and is widely used in the synthesis of natural products, functional polymers, and molecular architectures. This article focuses on the rational design of catalysts, substrate structures, and reaction conditions to meet specific metathesis pathways and make the catalytic systems more user-friendly and practical.
Alkyne metathesis (AM), the cousin of the 'noble' alkene metathesis, has attracted rapidly growing attention within the past 20 years and has been widely used in the synthesis of natural products, functional polymers, and shapepersistent molecular architectures. Given some excellent reviews in recent years, this article will not provide a comprehensive review of the catalyst development and the wide applications of AM, but rather will focus on the rational design of the catalysts, substrate structures, and reaction conditions that meet the requirements of certain metathesis pathways (e.g., cyclooligomerization, polymerization, self-correction) and will make the catalytic systems more userfriendly and practically useful (e.g., operating in air and with long lifetimes and broad substrate scope).
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