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从长键角度理解和调控稀有气体氢化物的高能性质:对HNgCO/CS/OSi和HNgCN/NC(Ng = He、Ar、Kr、Xe、Rn)分子的自然键轨道/自然共振理论研究

Understanding and modulating the high-energy properties of noble-gas hydrides from their long-bonding: an NBO/NRT investigation on HNgCO/CS/OSi and HNgCN/NC (Ng = He, Ar, Kr, Xe, Rn) molecules.

作者信息

Zhang Guiqiu, Song Junjie, Fu Lei, Tang Kongshuang, Su Yue, Chen Dezhan

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Functionalized Probes for Chemical Imaging, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Shandong Normal University, Wenhua East Road 88, Jinan, Shandong 250014, P. R. China.

出版信息

Phys Chem Chem Phys. 2018 Apr 18;20(15):10231-10239. doi: 10.1039/c8cp00306h.

Abstract

The noble-gas hydrides, HNgX (X is an electronegative atom or fragment), represent potential high-energy materials because their two-body decomposition process, HNgX → Ng + HX, is strongly exoergic. Our previous studies have shown that each member of the HNgX (X = halogen atom or CN/NC fragment) molecules is composed of three leading resonance structures: two ω-bonding structures (H-Ng+ :X- and H:- Ng+-X) and one long-bonding structure (H∧X). The last one paints a novel [small sigma, Greek, circumflex]-type long-bonding picture. The present study focuses on the relationship between this novel bonding motif and the unusual energetic properties. We chose HNgCO+/CS+/OSi+/CN/NC, with the formula HNgAB (Ng = He, Ar, Kr, Xe, Rn; AB = CO+/CS+/OSi+/CN/NC) as the research system. We first investigated the bonding of HNgCO+ and its analogous HNgCS+/OSi+ species using NBO/NRT methods, and quantitatively compared the bonding with that in HNgCN/NC molecules. NBO/NRT results showed that each of the HNgCO+/CS+/OSi+ molecules could be better represented as a resonance hybrid of ω-bonding and long-bonding structures, but the long-bonding is much weaker than that in HNgCN/NC molecules. Furthermore, we introduced the long-bonding concept into the rationalization of the high-energy properties, and found a good correlation between the highly exothermic two-body dissociation channel and the long-bond order, bH-A. We also found that the long-bond order is highly tunable for these noble-gas hydrides due to its dependence on the nature of the electronegative AB fragments or the central noble-gas atoms, Ng. On the basis of these results, we could optimize the energetic properties by changing the long-bonding motif of our studied molecules. Overall, this study shows that the long-bonding model provides an easy way to rationalize and modulate the unusual energy properties of noble-gas hydrides, and that it is helpful to predict some noble-gas hydrides as potential energetic materials.

摘要

稀有气体氢化物HNgX(X为电负性原子或片段)是潜在的高能材料,因为其双体分解过程HNgX→Ng + HX是强烈放热的。我们之前的研究表明,HNgX(X = 卤原子或CN/NC片段)分子的每个成员都由三种主要共振结构组成:两种ω键结构(H-Ng⁺:X⁻和H⁻:Ng⁺⁻X)和一种长键结构(H∧X)。最后一种描绘了一种新颖的[小西格玛,希腊语,抑扬符]型长键图景。本研究聚焦于这种新颖的键合模式与异常能量性质之间的关系。我们选择了HNgCO⁺/CS⁺/OSi⁺/CN/NC,其化学式为HNgAB(Ng = He、Ar、Kr、Xe、Rn;AB = CO⁺/CS⁺/OSi⁺/CN/NC)作为研究体系。我们首先使用NBO/NRT方法研究了HNgCO⁺及其类似物HNgCS⁺/OSi⁺物种的键合,并定量比较了与HNgCN/NC分子中的键合。NBO/NRT结果表明,每个HNgCO⁺/CS⁺/OSi⁺分子都可以更好地表示为ω键合和长键合结构的共振杂化体,但长键合比HNgCN/NC分子中的弱得多。此外,我们将长键合概念引入高能性质的合理化解释中,发现双体解离通道的高放热性与长键级bH-A之间存在良好的相关性。我们还发现,由于长键级依赖于电负性AB片段或中心稀有气体原子Ng的性质,这些稀有气体氢化物的长键级是高度可调的。基于这些结果,我们可以通过改变所研究分子的长键合模式来优化能量性质。总体而言,本研究表明长键合模型为合理化和调节稀有气体氢化物的异常能量性质提供了一种简便方法,并且有助于预测一些稀有气体氢化物作为潜在的高能材料。

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