首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Chemical modeling of mixed occupations and site preferences in anisotropic crystal structures: Case of complex intermetallic borides
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Chemical modeling of mixed occupations and site preferences in anisotropic crystal structures: Case of complex intermetallic borides

机译:各向异性晶体结构中混合职业和位点偏好的化学模型:复杂金属间硼化物的情况

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摘要

Transition-metal borides show not only promising physical properties but also a rich variety of crystal structures. In this context, quantum-chemical tools can shed light on important facets of the chemistry within such intermetallic borides. Using density-functional theory (DFT), we analyze in detail two phases of significant structural-chemical importance: the recently synthesized Ti _(1+x)Os _(2-x)RuB _2 and the isotypical Ti _(1+x)Os _(3-x)B _2. Starting from the observation of different Ti/Os occupations in X-ray crystal structure analysis, we assess suitable computational models and rationalize how the interplay of Ti-Ti, Ti-Os, and Os-Os bonds drives the site preferences. Then, we move on to a systematic investigation of the metal-boron bonds which embed the characteristic, trigonal-planar B _4 units within their metallic surroundings. Remarkably, the different Ti-B bonds in Ti _(1+x)Os _(2-x)RuB _2 (and also in its ternary derivative) are of vastly different strength, and the strength of these bonds does not correlate with their length. The tools presented in this work are based on simple and insightful chemical arguments together with DFT, and may subsequently be transferred to other intermetallic phases - transition-metal borides and beyond.
机译:过渡金属硼化物不仅显示出令人满意的物理性能,而且还显示出丰富的晶体结构。在这种情况下,量子化学工具可以揭示这种金属间硼化物中化学反应的重要方面。使用密度泛函理论(DFT),我们详细分析了两个具有重要结构化学意义的阶段:最近合成的Ti _(1 + x)Os _(2-x)RuB _2和同型Ti _(1 + x) Os _(3-x)B _2。从观察X射线晶体结构分析中不同Ti / Os的职业开始,我们评估合适的计算模型并合理化Ti-Ti,Ti-Os和Os-Os键的相互作用如何驱动位点偏好。然后,我们继续对金属-硼键进行系统研究,该键将特征性的三角平面B _4单元嵌入其金属周围。值得注意的是,Ti _(1 + x)Os _(2-x)RuB _2(以及其三元导数)中不同的Ti-B键具有非常不同的强度,这些键的强度与它们的强度无关长度。这项工作中介绍的工具是基于简单而有洞察力的化学论证以及DFT,随后可能会转移到其他金属间相-过渡金属硼化物等中。

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