Dipartimento di Chimica, Sapienza Università di Roma, Roma, Italy.
J Phys Chem A. 2013 Jun 13;117(23):4956-62. doi: 10.1021/jp402374t. Epub 2013 May 31.
The dissociation energy of the intermetallic molecule NaAu, for which two largely at variance experimental values are available in the literature, has been redetermined by the Knudsen effusion mass spectrometry method. The molecule has been produced in the vapor phase by a specially designed experimental setting inspired by the double oven technique. The equilibrium of dissociation to atoms as well as the exchange equilibrium with the gold dimer were monitored mass-spectrometrically over about a 600 K temperature range. The third-law analysis of the equilibrium data provides the dissociation energy D0° (NaAu, g) = 245.3 ± 6.8 kJ/mol, corresponding to a formation enthalpy at 298 K of 228.3 ± 7.5 kJ/mol. The NaAu species was also studied computationally at the CCSD(T) level with basis sets of increasing zeta quality thus allowing to evaluate the molecular parameters and the dissociation energy at the complete basis set limit.
金属间分子 NaAu 的离解能曾有两个在文献中差异很大的实验值,本文采用克努森扩散质谱法对其重新进行了测定。通过受双炉技术启发而专门设计的实验装置,在气相中生成该分子。通过质量光谱法监测大约 600 K 的温度范围内的离解为原子以及与金二聚体的交换平衡。平衡数据的第三定律分析提供了离解能 D0°(NaAu,g)=245.3 ± 6.8 kJ/mol,对应于 298 K 时的生成焓为 228.3 ± 7.5 kJ/mol。本文还在 CCSD(T)水平上对 NaAu 物种进行了计算研究,使用了越来越高质量的基组,从而可以评估分子参数和完全基组极限下的离解能。