Wagner F R, Bende D, Grin Yu
Max-Planck-Institut für Chemische Physik fester Stoffe, Nöthnitzer Straße 40, 01187 Dresden, Germany.
Dalton Trans. 2016 Feb 28;45(8):3236-43. doi: 10.1039/c5dt04140f.
Chemical bonding models are one of the most powerful tools in chemistry and provide essential guidance in the understanding of composition and structure of chemical compounds, as well as in the development of new preparation routes. Facing the tremendous diversity of crystal structures and properties of intermetallic compounds, it is highly desirable to make the predictive power of chemical bonding models also available for this field of inorganic chemistry. Within the framework of quantum-chemical position-space analysis the concept of the 8 - N rule is recovered and extended for a consistent and quantitative treatment of heteropolar bonding situations as in compounds of the MgAgAs type and their relatives. A first evaluation of the predictive capabilities of the position-space view is obtained in the analysis of 51 zinc-blende, wurtzite and rock-salt-type compounds. An outlook on future investigations is given and modifications of main-group elements and (pseudo) main-group compound families are classified within the presented model framework.
化学键合模型是化学领域最强大的工具之一,为理解化合物的组成和结构以及开发新的制备路线提供了重要指导。面对金属间化合物晶体结构和性质的巨大多样性,非常希望使化学键合模型的预测能力也能应用于这一无机化学领域。在量子化学位置空间分析的框架内,8 - N规则的概念得以恢复并扩展,以便对MgAgAs型化合物及其相关化合物中的异极键合情况进行一致且定量的处理。通过对51种闪锌矿、纤锌矿和岩盐型化合物的分析,对位置空间观点的预测能力进行了首次评估。给出了未来研究的展望,并在提出的模型框架内对主族元素和(准)主族化合物家族的修饰进行了分类。