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首页> 外文期刊>International Journal of Quantum Chemistry >Homonuclear chalcogen-chalcogen bond interactions in complexes pairing YO3 and YHX molecules (Y=S, Se; X=H, Cl, Br, CCH, NC, OH, OCH3): Influence of substitution and cooperativity
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Homonuclear chalcogen-chalcogen bond interactions in complexes pairing YO3 and YHX molecules (Y=S, Se; X=H, Cl, Br, CCH, NC, OH, OCH3): Influence of substitution and cooperativity

机译:YO3和YHX分子(Y = S,Se; X = H,Cl,Br,CCH,NC,OH,OCH3)配对的配合物中的全核硫属元素-硫属元素键相互作用:取代和协同作用的影响

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MP2/aug-cc-pVTZ calculations are performed on complexes of YO3 (Y=S, Se) with a series of electron-donating chalcogen bases YHX (X=H, Cl, Br, CCH, NC, OH, OCH3). These complexes are formed through the interaction of a positive electrostatic potential region (-hole) on the YO3 molecule with the negative region in YHX. Interaction energies of the binary O3YYHX complexes are in the range of -4.37 to -12.09 kcal/mol. The quantum theory of atoms in molecules and the natural bond orbital analysis were applied to characterize the nature of interactions. It was found that the formation and stability of these binary complexes are ruled mainly by electrostatic effects, although the electron charge transfer from YHX to YO3 unit also seems to play an important role. In addition, mutual influence between the YN and YY interactions is studied in the ternary HCNO3YYHX complexes. The results indicate that the formation of a YN interaction tends to weaken YY bond in the ternary systems. Although the YY interaction is weaker than the YN one, however, both types of interactions seem to compete with each other in the HCNO3YYHX complexes. (c) 2016 Wiley Periodicals, Inc.
机译:MP2 / aug-cc-pVTZ计算是在YO3(Y = S,Se)与一系列给电子硫族元素碱YHX(X = H,Cl,Br,CCH,NC,OH,OCH3)的配合物上进行的。这些配合物是通过YO3分子上的正静电势区域(孔)与YHX中的负区域的相互作用而形成的。二元O3YYHX配合物的相互作用能在-4.37至-12.09 kcal / mol的范围内。应用分子中原子的量子理论和自然键轨道分析来表征相互作用的性质。已发现这些二元配合物的形成和稳定性主要受静电作用支配,尽管电子电荷从YHX转移到YO3单元似乎也起着重要作用。此外,在三元HCNO3YYHX配合物中研究了YN和YY相互作用之间的相互影响。结果表明,YN相互作用的形成趋于削弱三元系统中的YY键。尽管YY相互作用比YN弱,但是,两种相互作用似乎在HCNO3YYHX配合物中相互竞争。 (c)2016年威利期刊有限公司

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