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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Spin-orbit coupling is the key to unraveling intriguing features of the halogen bond involving astatine
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Spin-orbit coupling is the key to unraveling intriguing features of the halogen bond involving astatine

机译:旋转轨道耦合是解开涉及astatine的卤素键的诱人特征的关键

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The effect of spin-orbit coupling (SOC) on the halogen bond involving astatine has been investigated using state-of-the-art two- and four-component relativistic calculations. Adducts between Cl-X (X = Cl, Br, I and At) and ammonia have been selected to establish a trend on going down the periodic table. The SOC influence has been explored not only on the geometric and energetic features that can be used to characterize the halogen bond strength but also on the three main contributions to it that are the charge transfer, the "sigma-hole" (i.e. the localized region with a net positive electrostatic potential at the halogen site) and the "polar flattening" (which is related to the effective shape of the halogen site). A surprisingly large increase of the Cl-At dipole moment, due to the inclusion of SOC, has been worked out using four-component CCSD(T) reference calculations, indicating that this bond is significantly more ionic than one may predict. Due to the SOC effect, which induces a peculiar charge accumulation on the At side in the Cl-At dimer, a weakening of the astatine-mediated halogen bond occurs arising from the (i) reduced amount of charge transfer, (ii) decrease of the polar flattening and (iii) lowering of the short-range Coulomb potential. The analysis of the electronic structure of the Cl-At moiety allows for a rationalization of the SOC effects on all the considered features of the halogen bond, including an unprecedented unsymmetrical charge back-donation from Cl-At to ammonia.
机译:利用最先进的两组分相对论计算研究了旋转轨道偶联(SOC)对涉及夏虫的卤素键的影响。已经选择了CL-X(X = CL,BR,I和AT)和氨之间的加合物来建立周期表上的趋势。对于可用于表征卤素键强度的几何和能量特征,也探讨了SOC的影响,也探讨了卤素键强度,也探讨了对其的三个主要贡献,这是电荷转移,“Sigma-孔”(即局部区域)在卤素部位净正静电电位,“极性扁平化”(与卤素部位的有效形状有关)。由于包含SOC的令人惊讶地大的增加了Cl-in偶极矩的增加,使用四组分CCSD(t)参考计算,表明该键比一个可能预测的离子显着更多。由于SOC效应,其在Cl-AT二聚体中的侧面上诱导特殊的电荷积累,从(I)减少的电荷转移量,(i)减少,发生夏季介导的卤素键的弱化极性扁平化和(iii)降低短程库仑电位。 Cl-in部分的电子结构分析允许对卤素键的所有考虑特征的SOC效应的合理化,包括从Cl-at氨到氨的前所未有的不对称电荷返回。

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    Univ Perugia Dept Chem Biol &

    Biotechnol Via Elce Sotto 8 I-06123 Perugia Italy;

    Univ Perugia Dept Chem Biol &

    Biotechnol Via Elce Sotto 8 I-06123 Perugia Italy;

    Univ Perugia Dept Chem Biol &

    Biotechnol Via Elce Sotto 8 I-06123 Perugia Italy;

    CNR SCITEC CNR Inst Chem Sci &

    Technol Giulio Natta Via Elce Sotto 8 I-06123 Perugia Italy;

    CNR SCITEC CNR Inst Chem Sci &

    Technol Giulio Natta Via Elce Sotto 8 I-06123 Perugia Italy;

    Univ Perugia Dept Chem Biol &

    Biotechnol Via Elce Sotto 8 I-06123 Perugia Italy;

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  • 正文语种 eng
  • 中图分类 物理学 ; 化学 ;
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