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碱金属三卤化物:MX离子对还是MX - X络合物?

Alkali-Metal Trihalides: MX Ion Pair or MX-X Complex?

作者信息

Sun Zhi, Moore Kevin B, Hill J Grant, Peterson Kirk A, Schaefer Henry F, Hoffmann Roald

机构信息

Center for Computational Quantum Chemistry , University of Georgia , Athens , Georgia 30602 , United States.

Department of Chemistry , University of Sheffield , Sheffield S3 7HF , United Kingdom.

出版信息

J Phys Chem B. 2018 Apr 5;122(13):3339-3353. doi: 10.1021/acs.jpcb.7b10005. Epub 2018 Jan 4.

Abstract

The alkali-metal trihalides MX (M = Li, Na, K, Rb, and Cs; X = Cl, Br, and I) are systematically studied using coupled-cluster methods. Benchmarks using CCSD(T) against diatomic experimental results suggest satisfactory performance for the weighted core-valence basis sets (new basis sets for K, Rb, and Cs) selected for predicting reliable structures and harmonic vibrational frequencies. An isomer search using the B3LYP functional yields a planar, yet asymmetric T-shaped C structure as the global minimum for all MX species. Much higher level CCSD(T) computations show a moderate to strong distortion of the X anion by the M cation in the respective equilibrium geometries. Most obviously, for LiCl, the two Cl-Cl distances are separated by 0.786 Å. Even for CsI, the structure least distorted from the MX model, the two I-I distances differ by 0.243 Å. It does not take much energy to distort the parent anions along an antisymmetric stretch, so this is no surprise. The normal modes of vibration of the MX molecules are in better agreement with matrix isolation experiments than previous calculations. And these normal modes reveal that, instead of the well-established antisymmetric and symmetric stretches of the "free" X anions, relatively localized and mutually perturbed X-X and M-X stretches are calculated. The suggestion emerges that the MX system may be alternatively described as an MX-X complex rather than the MX ion pair. This perspective is supported by bonding analyses showing low electron densities at the bond critical points and natural bond orders between the MX and X moieties. The thermochemistry of fragmentations of MX to MX + X versus M + X also supports the alternative viewpoint of the bonding in this class of molecules.

摘要

使用耦合簇方法对碱金属三卤化物MX(M = Li、Na、K、Rb和Cs;X = Cl、Br和I)进行了系统研究。使用CCSD(T)针对双原子实验结果进行的基准测试表明,对于为预测可靠结构和谐波振动频率而选择的加权芯价基组(K、Rb和Cs的新基组),其性能令人满意。使用B3LYP泛函进行的异构体搜索得出,平面但不对称的T形C结构是所有MX物种的全局最小值。更高水平的CCSD(T)计算表明,在各自的平衡几何结构中,X阴离子受到M阳离子的中度到强烈扭曲。最明显的是,对于LiCl,两个Cl-Cl距离相差0.786 Å。即使对于CsI,与MX模型扭曲最小的结构,两个I-I距离也相差0.243 Å。沿反对称拉伸扭曲母体阴离子不需要太多能量,所以这并不奇怪。MX分子的正常振动模式与基质隔离实验的吻合度比以前的计算更好。这些正常模式表明,计算得出的不是“自由”X阴离子中既定的反对称和对称拉伸,而是相对局部且相互扰动的X-X和M-X拉伸。由此提出,MX系统可以被描述为MX-X络合物,而不是MX离子对。键合分析表明键临界点处电子密度低以及MX和X部分之间的自然键序,这一观点得到了支持。MX分解为MX + X与M + X的热化学也支持了这类分子键合的另一种观点。

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