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首页> 外文期刊>International Journal of Quantum Chemistry >A DFT study of Lp center dot center dot center dot/halogen bond competition in complexes of perhalogenated alkenes with oxygenitrogen containing simple molecules
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A DFT study of Lp center dot center dot center dot/halogen bond competition in complexes of perhalogenated alkenes with oxygenitrogen containing simple molecules

机译:DFT研究全卤代烯烃与含氧/氮的简单分子络合物中Lp中心点中心点中心点/卤素键的竞争

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摘要

The possible noncovalent lone pair-/halogen bond (lp/HaB) complexes of perhalogenated unsaturated C2ClnF4-n (n=0-4) molecules with four simple molecules containing oxygen or nitrogen as electron donor, formaldehyde (H2CO), dimethyl ether (DME), NH3, and trimethylamine (TMA), have been systematically examined at the M062X/aug-cc-pVTZ level. Natural bond orbital (NBO) analysis at the same level is used for understanding the electron density distributions of these complexes. The progressive introduction of Cl atom on C2ClnF4-n influences more on the lp complexes over the corresponding HaB ones. Within the scope of this study, gem-C2Cl2F2 is the best partner molecule for lp interaction with the simple molecules, coupled with the greatest interaction energy (IE) and second-order orbital interaction [E(2) value], whereas C2F4 is the poorest one. The C2Cl3FH2CO and C2Cl4H2CO complexes exhibit reverse lp bonding, while the Z/E-C2Cl2F2NH3, C2Cl3FNH3 and C2Cl4NH3 complexes perform half-lp bonding according to the NBO analysis. The lp interaction involving the oxygenitrogen and the -hole of C2ClnF4-n overwhelms the HaB involving the oxygenitrogen and the sigma-hole of the Cl atom. The electron-donating methyl groups contribute significantly to the two competitive interactions, therefore, DME and TMA engage stronger in the partner molecules than H2CO and NH3. Our theoretical study would be useful for future experimental investigation on noncovalent complexes. (c) 2016 Wiley Periodicals, Inc.
机译:全卤化的不饱和C2ClnF4-n(n = 0-4)分子与四个包含氧或氮作为电子供体的简单分子,甲醛(H2CO),二甲醚(DME)的可能的非共价孤对-/卤素键(lp / HaB)配合物),NH3和三甲胺(TMA)已在M062X / aug-cc-pVTZ水平上进行了系统检查。使用同一水平的自然键轨道(NBO)分析来了解这些配合物的电子密度分布。 Cl原子在C2ClnF4-n上的逐步引入比相应的HaB分子对lp配合物的影响更大。在这项研究的范围内,gem-C2Cl2F2是与简单分子进行lp相互作用的最佳伴侣分子,再加上最大的相互作用能(IE)和二阶轨道相互作用[E(2)值],而C2F4是最穷的一个根据NBO分析,C2Cl3FH2CO和C2Cl4H2CO配合物表现出反向lp键合,而Z / E-C2Cl2F2NH3,C2Cl3FNH3和C2Cl4NH3配合物进行半lp键合。涉及氧/氮和C2ClnF4-n的-空穴的lp相互作用压倒了涉及氧/氮和Cl原子的σ孔的HaB。给电子的甲基极大地促进了这两种竞争性相互作用,因此,DME和TMA在伴侣分子中的参与要比H2CO和NH3强。我们的理论研究将对将来对非共价复合物的实验研究有用。 (c)2016年威利期刊有限公司

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