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金-钪、金-钛和金-铁分子:通过努森 effusion 质谱实验结合从头算计算确定键能

The AuSc, AuTi, and AuFe molecules: Determination of the bond energies by Knudsen effusion mass spectrometry experiments combined with ab initio calculations.

作者信息

Lucci Elena, Giarrusso Sara, Gigli Guido, Ciccioli Andrea

机构信息

Department of Chemistry, University of Rome La Sapienza, p.le A. Moro 5, I-00185 Rome, Italy.

出版信息

J Chem Phys. 2022 Aug 28;157(8):084303. doi: 10.1063/5.0094621.

Abstract

The AuTi gaseous molecule was for the first time identified in vapors produced at high temperature from a gold-titanium alloy. The homogeneous equilibria AuTi(g) = Au(g) + Ti(g) (direct dissociation) and AuTi(g) + Au(g) = Au(g) + Ti(g) (isomolecular exchange) were studied by Knudsen effusion mass spectrometry in the temperature range 2111-2229 K. The so determined equilibrium constants were treated by the "third-law method" of thermodynamic analysis, integrated with theoretical calculations, and the dissociation energy at 0 K was derived as D (AuTi) = 241.0 ± 5.2 kJ/mol. A similar investigation was carried out for the AuSc and AuFe species, whose dissociation energies were previously reported with large uncertainties. The direct dissociation and the isomolecular exchange with the Au dimer were studied in the 1969-2274 and 1842-2092 K ranges for AuSc and AuFe, respectively, and the dissociation energies derived as D (AuSc) = 240.4 ± 6.0 and D (AuFe) = 186.2 ± 4.2 kJ/mol. The experimental bond energies are compared with those calculated here by coupled cluster with single, double, and perturbative triple excitations with the correlation-consistent basis sets cc-pVXZ(-PP) and cc-pwCVXZ(-PP) (with X = T, Q, 5), also in the limit of complete basis set, and with those from complete active space self-consistent field-multi-reference configuration interaction calculations, recently available in the literature. The stronger bond of AuTi compared to AuFe parallels the trend observed in monochlorides. This analogy is shown to be more generally observed in the AuM and MCl diatomic series (with M = first row transition metal), in accordance with a picture of "pseudo-halogen" bonding behavior of gold.

摘要

首次在高温下由金 - 钛合金产生的蒸汽中鉴定出AuTi气态分子。通过克努森 effusion 质谱法在2111 - 2229 K的温度范围内研究了均相平衡AuTi(g) = Au(g) + Ti(g)(直接解离)和AuTi(g) + Au(g) = Au(g) + Ti(g)(等分子交换)。通过热力学分析的“第三定律方法”处理如此确定的平衡常数,并与理论计算相结合,得出0 K时的解离能为D (AuTi) = 241.0 ± 5.2 kJ/mol。对AuSc和AuFe物种进行了类似的研究,其解离能先前报道存在很大不确定性。分别在1969 - 2274 K和1842 - 2092 K范围内研究了AuSc和AuFe与Au二聚体的直接解离和等分子交换,得出解离能为D (AuSc) = 240.4 ± 6.0和D (AuFe) = 186.2 ± 4.2 kJ/mol。将实验键能与这里用耦合簇方法(包括单、双和微扰三激发)结合相关一致基组cc - pVXZ(-PP)和cc - pwCVXZ(-PP)(X = T、Q、5)计算得出的结果进行比较,也在完全基组极限下进行比较,并与文献中最近可得的完全活性空间自洽场 - 多参考组态相互作用计算结果进行比较。与AuFe相比,AuTi的更强键与一氯化物中观察到的趋势相似。这种类比在AuM和MCl双原子系列(M = 第一行过渡金属)中更普遍地观察到,这与金的“类卤素”键合行为的描述一致。

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