Key Laboratory of Green Chemistry & Technology of Ministry of Education, College of Chemistry, Sichuan University, Chengdu 610064, People's Republic of China.
College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu 610065, People's Republic of China.
J Am Chem Soc. 2022 Feb 9;144(5):2062-2068. doi: 10.1021/jacs.1c12071. Epub 2022 Jan 27.
Diacids are important monomers in the polymer industry to construct valuable materials. Dicarboxylation of unsaturated bonds, such as alkenes and alkynes, with CO has been demonstrated as a promising synthetic method. However, dicarboxylation of C─C single bonds with CO has rarely been investigated. Herein we report a novel electrochemical ring-opening dicarboxylation of C─C single bonds in strained rings with CO. Structurally diverse glutaric acid and adipic acid derivatives were synthesized from substituted cyclopropanes and cyclobutanes in moderate to high yields. In contrast to oxidative ring openings, this is also the first realization of an electroreductive ring-opening reaction of strained rings, including commercialized ones. Control experiments suggested that radical anions and carbanions might be the key intermediates in this reaction. Moreover, this process features high step and atom economy, mild reaction conditions (1 atm, room temperature), good chemoselectivity and functional group tolerance, low electrolyte concentration, and easy derivatization of the products. Furthermore, we conducted polymerization of the corresponding diesters with diols to obtain a potential UV-shielding material with a self-healing function and a fluorine-containing polyester, whose performance tests showed promising applications.
二酸是聚合物工业中构建有价值材料的重要单体。已经证明,通过 CO 使不饱和键(如烯烃和炔烃)二羧酸化为一种很有前途的合成方法。然而,用 CO 二羧酸化 C─C 单键的研究很少。在此,我们报告了一种新颖的电化学开环二羧酸化 CO 作用下的应变环中的 C─C 单键。从取代的环丙烷和环丁烷中以中等至高产率合成了结构多样的戊二酸和己二酸衍生物。与氧化开环反应相反,这也是第一个实现应变环的电还原开环反应,包括商业化的应变环。对照实验表明,自由基阴离子和碳负离子可能是该反应的关键中间体。此外,该过程具有高步骤和原子经济性、温和的反应条件(1 大气压,室温)、良好的化学选择性和官能团耐受性、低电解质浓度以及产物的易于衍生化。此外,我们进行了相应的二酯与二醇的聚合,得到了一种具有自修复功能的潜在紫外线屏蔽材料和一种含氟聚酯,其性能测试显示出有希望的应用。