Kinugawa Tsubasa, Mitsusada Seishu, Orito Naoki, Matsuo Takashi
Division of Materials Science, Nara Institute of Science and Technology, 8916-5 Takayama-cho, Ikoma, Nara 630-0192, Japan.
ACS Omega. 2024 Dec 17;9(52):51604-51610. doi: 10.1021/acsomega.4c09137. eCollection 2024 Dec 31.
A Hoveyda-Grubbs (HG)-type olefin metathesis complex with a selenoether moiety at the terminus of phenoxy moiety was synthesized. The complex showed direct selenium-atom coordination to the ruthenium center, resulting in higher thermodynamic stability compared with the parent HG catalyst. The selenium atom binding enhanced the tolerance to protic solvent molecules in ring-closing metathesis of -tosyldiallylamide and diethyl diallylmalonate, and also in the cross metathesis between 3-butenylbenzoate and methyl acrylate. The large activation enthalpy observed in the reaction with -butyl vinyl ether indicated an increased contribution of the "dissociative mechanism" during the initiation of the catalytic cycle. Introducing coordinative atoms or functional groups at the terminal of the phenoxy moiety is a useful strategy to regulate the thermostability of HG-type olefin metathesis catalysts.
合成了一种在苯氧基末端带有硒醚部分的霍维达-格鲁布斯(HG)型烯烃复分解络合物。该络合物显示出硒原子与钌中心直接配位,与母体HG催化剂相比,具有更高的热力学稳定性。硒原子的结合增强了对对甲苯磺酰二烯丙基酰胺和二乙基二烯丙基丙二酸酯闭环复分解反应中质子溶剂分子的耐受性,以及对苯甲酸3-丁烯酯和丙烯酸甲酯之间交叉复分解反应中质子溶剂分子的耐受性。与叔丁基乙烯基醚反应中观察到的较大活化焓表明,在催化循环起始过程中“解离机理”的贡献增加。在苯氧基末端引入配位原子或官能团是调节HG型烯烃复分解催化剂热稳定性的一种有用策略。