首页> 外文期刊>Bulletin of the Chemical Society of Japan >Theoretical and Computational Study of a Complex System Consisting of Transition Metal Element(s): How to Understand and Predict Its Geometry, Bonding Nature, Molecular Property, and Reaction Behavior
【24h】

Theoretical and Computational Study of a Complex System Consisting of Transition Metal Element(s): How to Understand and Predict Its Geometry, Bonding Nature, Molecular Property, and Reaction Behavior

机译:一种由过渡金属元素组成的复杂系统的理论和计算研究:如何理解和预测其几何形状,粘合性质,分子特性和反应行为

获取原文
获取原文并翻译 | 示例
       

摘要

Complex chemical systems consisting of transition metal element(s) are important and attractive research targets in both experimental chemistry and theoretical chemistry. Transition-metal complexes with carbon dioxide are discussed as one example, in which the coordination geometry, bonding nature, and reactivity are understood well and predicted with the HOMO and the number of d electrons. The spin-multiplicity of inverse sandwich-type dinuclear transition-metal complexes, which have been synthesized recently as a new type of compound, is discussed as another example based on CASPT2 calculations, in which the clear relationship between the spin multiplicity of its ground state and the number of d electrons is presented. Theoretical understanding of various organometallic reactions has been an important endeavor over the last two decades. Insertion reactions of olefin and carbon dioxide into M-H and M-alkyl bonds and sigma-bond activation reactions are discussed with orbital interaction diagrams based on perturbation theory. In particular, detailed discussion of the characteristic features of a new type of oxidative addition to an M-L moiety (L = neutral ligand such as alkene and alkyne) and heterolytic a-bond activation by an M-X moiety (X = anionic ligand). It is still a central challenge to elucidate the reaction mechanisms of catalytic reactions by transition metal complexes. The reaction mechanisms and electronic processes of Ru-catalyzed hydrogenation of carbon dioxide, Pt-, Rh-, and Zr-catalyzed hydrosilylations of alkene, Ir-catalyzed borylation of benzene, and the Hiyama cross-coupling reaction are analyzed based on computational results. We wish to present how to understand the mechanism based on the number of d electrons and the energy of d orbitals in discussion. Also, the importance of solvation and crystalline effects in the theoretical study of transition-metal complexes is discussed based on our recent theoretical studies of mixed-valence complex and a single crystal of a Pt(II) complex.
机译:由过渡金属元素组成的复杂化学系统是实验化学和理论化学的重要且有吸引力的研究靶标。用二氧化碳的过渡金属配合物作为一个示例讨论,其中,协调几何形状,粘合性质和反应性被良好地理解并用HOMO和D电子的数量预测。最近已作为一种新型化合物合成的旋转夹层的二核转换 - 金属配合物的旋转多重性是基于Caspt2计算的另一个例子,其中其地位的自旋多重之间的清晰关系并且提出了D电子的数量。对各种有机金属反应的理论理解是过去二十年的重要努力。基于扰动理论的轨道相互作用图讨论了烯烃和二氧化碳进入M-H和M-烷基键和Sigma键活化反应的插入反应。特别地,对M-L部分(L =中性配体如烯烃和炔烃如烯烃)和M-X部分(X =阴离子配体)的异解α - 键活化的详细讨论。通过过渡金属配合物阐明催化反应的反应机制仍然是一种中央挑战。基于计算结果,分析了烯烃二氧化碳,Pt-,Rh-和Zr催化氢化烯烃,IR催化硼化硼化的氢化氢硅烷化的反应机理和电子方法,以及Hiyyama交叉偶联反应。我们希望介绍如何了解基于D电子的数量和D轨道在讨论中的能量的机制。此外,求解和结晶作用在过渡 - 金属配合物的理论研究中的重要性是基于我们最近的混合价络合物和Pt(II)复合物的单晶的理论研究。

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