电石
乙炔
化学
易燃液体
绿色化学
碳化物
爆炸物
纳米技术
生化工程
组合化学
有机化学
反应机理
材料科学
工程类
催化作用
作者
Konstantin S. Rodygin,Maria S. Ledovskaya,Vladimir V. Voronin,Кристина А. Лоцман,Valentine P. Ananikov
标识
DOI:10.1002/ejoc.202001098
摘要
Acetylene is a key building block for organic chemistry and potentially can be involved in a diverse range of synthetic transformations. However, critical analysis of practical considerations showed that application of gaseous acetylene in regular synthetic labs encounters a number of difficulties. Safety limitations due to flammable and explosive nature of gaseous acetylene and requirements for specialized high‐pressure equipment impose serious drawbacks. Typical reaction conditions involve excess of gaseous reactant, which is simply released to the atmosphere at the end of the reaction, thus generating waste and causing contamination. Calcium carbide brings a new green and sustainable wave into powerful alkyne transformations and significantly expands the repertoire of traditional acetylene chemistry. The novel trend of using calcium carbide instead of gaseous acetylene is synthetically beneficial and opens a novel reactivity for the C≡C unit. This review highlights recent advances in carbide chemistry, demonstrates its advantages and prospects in term of green synthetic approach.
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