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通过 C-O 键断裂,碳化钙对芳基醚(木质素 β-O-4 键)和环氧化物的乙烯基化。

Vinylation of Aryl Ether (Lignin β-O-4 Linkage) and Epoxides with Calcium Carbide through C-O Bond Cleavage.

机构信息

Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, The Nanos, Singapore, 138669, Singapore.

出版信息

ChemSusChem. 2017 Aug 24;10(16):3198-3201. doi: 10.1002/cssc.201701153. Epub 2017 Aug 4.

Abstract

Calcium carbide has been increasingly used as a sustainable, easy-to-handle, and low-cost feedstock in organic synthesis. Currently, methodologies of using calcium carbide as "solid acetylene" in synthesis are strictly limited to activation and reaction with X-H (X=C, N, O, S) bonds. Herein, a mild and transition-metal-free protocol was developed for the vinylation of epoxides and aryl ether linkage (β-O-4 lignin model compound) with calcium carbide through C-O bond cleavage, forming valuable vinyl ether products. Calcium carbide plays a vital role in the C-O bond activation and cleavage, and in providing acetylide source for the formation of vinylated products. These exciting results may provide new methodologies for organic synthesis and new insights toward lignin- or biomassrelated degradation to useful products.

摘要

碳化钙作为一种可持续、易于处理和低成本的有机合成原料,其应用日益广泛。目前,将碳化钙用作“固体乙炔”在合成中的方法严格限于与 X-H(X=C、N、O、S)键的活化和反应。在此,通过 C-O 键的断裂,开发了一种温和且无过渡金属的方法,用于通过碳化钙对环氧化物和芳基醚键(β-O-4 木质素模型化合物)的乙烯基化反应,形成有价值的乙烯基醚产物。碳化钙在 C-O 键的活化和断裂中以及为形成乙烯基化产物提供乙炔源方面发挥着重要作用。这些令人兴奋的结果可能为有机合成提供新的方法,并为木质素或生物质相关降解为有用产物提供新的见解。

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