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Inorganic metallocenes: The structures and aromaticity of sandwich compounds of the transition elements with inorganic rings

机译:无机茂金属:具有无机环的过渡元素夹心化合物的结构和芳香性

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The concept of aromaticity has dramatically evolved and expanded to where it is no longer reserved for use in organic chemistry but is also useful in describing the bonding in many inorganic compounds. The aromaticity of inorganic rings arises from participation of s, p, d and f atomic orbitals to form delocalized a, it, 8 and molecular orbitals. This report describes the stability, structures and bonding of mainly covalent inorganic "sandwich" compounds or metallocenes in which aromatic, antiaromatic and nonaromatic inorganic rings, as well as those with multiple or conflicting aromaticity, are bonded primarily to the transition elements. Also included are some examples of ionic salt and covalent metallocenes of the main group and f-block elements with rings that exhibit other than only p orbital aromaticity. While many of the referenced compounds have been experimentally generated, computational methods play an important role in predicting the stability and ground state structures of several other hypothetical inorganic rings and the metallocenes produced from them. The theoretical studies also aid in defining the criteria that are used in determining the nature of compound aromaticity.
机译:芳香性的概念已经发生了巨大的演变,并扩展到不再保留用于有机化学的位置,但也可用于描述许多无机化合物中的键合。无机环的芳香性来自s,p,d和f原子轨道的参与,形成离域的a,it,8和分子轨道。该报告描述了主要共价的无机“三明治”化合物或茂金属的稳定性,结构和键合,其中芳族,抗芳族和非芳族无机环以及具有多个或相互冲突的芳族环主要与过渡元素键合。还包括一些主要盐的离子盐和共价金属茂的实例,以及具有仅显示p轨道芳族以外的环的f-嵌段元素。尽管许多参考化合物都是通过实验方法生成的,但计算方法在预测其他几种假设的无机环以及由此产生的茂金属的稳定性和基态结构方面起着重要作用。理论研究还有助于定义用于确定化合物芳香性性质的标准。

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