...
首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Reactivity of Metal Carbenes with Olefins: Theoretical Insights on the Carbene Electronic Structure and Cyclopropanation Reaction Mechanism
【24h】

Reactivity of Metal Carbenes with Olefins: Theoretical Insights on the Carbene Electronic Structure and Cyclopropanation Reaction Mechanism

机译:金属碳酸与烯烃的反应性:对卡宾电子结构和环丙烷反应机制的理论见解

获取原文
获取原文并翻译 | 示例

摘要

Present work addresses the reactivity of several phenyl-substituted metal–carbene complexes with 4-methylstyrene by means of density functional theory OPBE simulations. Different paths that lead to cyclopropanation were explored and compared to the olefin metathesis mechanism. For this purpose, we chose four different catalysts: (i) the Grubbs second-generation olefin metathesis catalyst, (ii) a Grubs second-generation-like complex, in which ruthenium is replaced by iron, and (iii) two iron carbene complexes (a piano stool and a porphyrin iron carbene) that experimentally catalyze alkene cyclopropanation. Results suggest that the nature of the applying mechanism is very sensitive to the coordination around the metal center and the spin state of the metal–carbene complex. Cyclopropanation by open-shell metal–carbene complexes seems to preferentially proceed through a two-step radical mechanism, in which the two C–C bonds are sequentially formed (path C). Singlet-state carbenes proceed either through a direct attack of the olefin to the carbene (path D) when the formation of the metallacycle is not feasible or through a reductive elimination from the metallacyclobutane when this intermediate is accessible both kinetically and thermodynamically (path B).
机译:目前的工作通过密度泛函理论OPBE模拟地解决了几种苯基取代的金属 - 卡宾配合物的反应性与4-甲基苯乙烯。探讨了导致环丙烷的不同途径并与烯烃复分解机制相比。为此目的,我们选择了四种不同的催化剂:(i)GRUBBS第二代烯烃复分解催化剂,(ii)甲基二代样络合物,其中钌被铁代,(iii)两种铁菜络合物代替(钢琴凳子和卟啉铁菜),实验催化烯酮环丙烷。结果表明,施加机构的性质对金属中心周围的协调和金属 - 卡宾配合物的旋转状态非常敏感。通过开壳金属 - 卡宾络合物的环丙烷似乎优先通过两步自由基机制进行,其中依次形成两个C-C键(路径c)。当金属缩合的形成是不可行的或通过金属键切丁烷的形成时,通过直接攻击烯烃的直接攻击烯烃(路径d),当该中间体均可在动力学和热力学(路径B)中都可以。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号