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OBCN isomerization and noble gas insertion compounds of identical valence electron number species: stability and bonding

机译:obcn异构化和惰性气体插入化合物的相同价电子数物种:稳定性和粘合

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摘要

A series of new noble gas (Ng) insertion compounds of the general type XNgX, XNgY and XNgY~+ has been theoretically studied using ab initio and DFT methods herein. We first studied the isomerization process of the OBCN compound, and then investigated the bonding properties and stability of the compounds formed by inserting Ng into the single bond of the three low energy isomers by high-level ab initio calculations. The OBNgCN compounds are thermochemically stable with respect to all dissociation channels except for the processes of releasing OBCN/OBNC and free Ng. Furthermore, the two dissociation processes OBNgCN → Ng + OBNC and OBNgNC → Ng + OBCN are kinetically prohibited by the relatively high free energy barrier ranging from 22.7 to 31.7 kcal mol~(-1) except for the OBKrCN and OBKrNC analogues. And the adaptive natural density partitioning (AdNDP) analysis indicated that chemical bonding in OBNgCN compounds is realized via a delocalized 3-center 2-electron (3c-2e) σ-bond in the B-Ng-C moiety and a totally delocalized 5-center 2-electron (5c-2e) σ-bond in the whole O-B-Ng-C-N. Natural bond orbital (NBO) theory, atoms-in-molecules (AIM) and energy decomposition analysis (EDA) based on the molecular wavefunction revealed that the B-Ng bond and Ng-C bond have some covalent character in OBNgCN. In addition, the calculation and detailed bonding analysis on a large number of neutral and monocationic compounds with identical valence electron numbers to OBNgCN demonstrate that the two bonds directly linked to the Ng atoms have covalent properties in neutral compounds, whereas Ng forms one typical covalent bond and one partial covalent and partial ionic bond with the neighboring atoms in the monocationic compounds.
机译:通过本文的AB Initio和DFT方法理论地研究了一系列新的XNGX,XNGY和XNGY〜+的新惰性气体(NG)插入化合物。我们首先研究了OBCN化合物的异构化过程,然后通过高级别AB初始计算将Ng插入三个低能量异构体的单键中形成的化合物的键合性能和稳定性。除了释放OBCN / OBNC和Free Ng的过程之外,OB1GCN化合物在所有解离通道上是热化学稳定的。此外,除了obkrcn和obkrnc类似物之外,两个解离方法Obngccn→ng + obnc和obngnc→ng + obcn→ng + obcn→ng + obcn→ng + obcn。和自适应天然密度分配(ADNDP)分析表明,通过在B-NG-C部分中的分层3中心2-电子(3C-2E)σ-键和完全被截匙5-的化合物中的化学键合在OBNGCN化合物中实现。中心2-电子(5C-2E)σ-键在整个OB-NG-CN中。基于分子波功能的天然键(NBO)理论,原子分子(AIM)和能量分解分析(EDA)显示,B-NG键和Ng-C键在OBNGCN中具有一些共价特征。此外,对具有相同价电子数与OB1GCN的大量中性和单分子化合物的计算和详细键合分析表明,直接连接到Ng原子的两个键在中性化合物中具有共价特性,而Ng形成一个典型的共价键与单独的化合物中的相邻原子有一个部分共价和部分离子键。

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    Mei Wen; Zhuo Zhe Li; An Yong Li;

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    School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 P. R. China.;

    School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 P. R. China.;

    School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 P. R China.;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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