Swart Marcel, Rösler Ernst, Bickelhaupt F Matthias
Theoretische Chemie, Scheikundig Laboratorium der Vrije Universiteit, De Boelelaan 1083, NL-1081 HV Amsterdam, The Netherlands.
J Comput Chem. 2006 Oct;27(13):1486-93. doi: 10.1002/jcc.20431.
We have carried out an extensive exploration of the gas-phase basicity of archetypal neutral bases across the periodic system using the generalized gradient approximation (GGA) of the density functional theory (DFT) at BP86/QZ4P//BP86/TZ2P. First, we validate DFT as a reliable tool for computing proton affinities and related thermochemical quantities: BP86/QZ4P//BP86/TZ2P is shown to yield a mean absolute deviation of 2.0 kcal/mol for the proton affinity at 298 K with respect to experiment, and 1.2 kcal/mol with high-level ab initio benchmark data. The main purpose of this work is to provide the proton affinities (and corresponding entropies) at 298 K of the neutral bases constituted by all maingroup-element hydrides of groups 15-17 and the noble gases, that is, group 18, and periods 1-6. We have also studied the effect of step-wise methylation of the protophilic center of the second- and third-period bases.
我们运用密度泛函理论(DFT)的广义梯度近似(GGA),在BP86/QZ4P//BP86/TZ2P水平下,对整个周期系中典型中性碱的气相碱度进行了广泛探索。首先,我们验证了DFT作为计算质子亲和能及相关热化学量的可靠工具:结果表明,BP86/QZ4P//BP86/TZ2P对于298 K时质子亲和能的计算结果与实验值相比,平均绝对偏差为2.0 kcal/mol,与高水平从头算基准数据相比平均绝对偏差为1.2 kcal/mol。这项工作的主要目的是提供由第15 - 17主族元素氢化物以及稀有气体(即第18族)和第1 - 6周期构成的中性碱在298 K时的质子亲和能(以及相应的熵)。我们还研究了第二和第三周期碱的亲质子中心逐步甲基化的影响。