...
首页> 外文期刊>The Journal of Chemical Physics >Density functional theory study of the proton-bound rare-gas dimers Rg(2)H(+) and (RgHRg ')(+) (Rg = Ar, Kr, Xe): Interpretation of experimental matrix isolation infrared data
【24h】

Density functional theory study of the proton-bound rare-gas dimers Rg(2)H(+) and (RgHRg ')(+) (Rg = Ar, Kr, Xe): Interpretation of experimental matrix isolation infrared data

机译:质子结合的稀有气体二聚体Rg(2)H(+)和(RgHRg')(+)(Rg = Ar,Kr,Xe)的密度泛函理论研究:实验基质分离红外数据的解释

获取原文
获取原文并翻译 | 示例
           

摘要

Density functional theory calculations have been performed on the various proton-bound rare-gas dimers Rg(2)H(+) and (RgHRg')(+) (Rg=Ar, Kr, or Xe, and Rg not equal Rg') employing the BP86 method coupled with either a Gaussian split valence basis set (DZVP) or a numerical split valence basis set (DN**). The calculations with the DN** basis represent the first calculations in which correct qualitative agreement is obtained with respect to the trend in experimental data for the antisymmetric stretching wavenumbers of the three Rg(2)H(+) cations. Good qualitative agreement is also obtained for the antisymmetric stretching wavenumber of the mixed-rare-gas species (ArHKr)(+). For the xenon-containing mixed-rare-gas cations, the agreement with experimental wavenumbers is not good as is the case for the DZVP basis set with any of the aforementioned cations. This is believed to be due to the inability of these basis sets to predict some physical and chemical properties for these species. Quantitative agreement between theory and experiment with respect to the antisymmetric stretch of the Rg(2)H(+) cations is improved when four radial argon atoms are placed at a fixed distance from the central H, intended to mimic the matrix environment. Based on these calculations, an inverse hydrogen-isotope dependence for the dissociation energy of these species is predicted. No center atom isotope dependence is predicted for the symmetric stretching vibration. Employing a polyatomic model, we have reanalyzed previously published combination band data for Xe2H+ and Xe2D+, and concluded that there is no evidence for an inverse isotope dependence for the symmetric stretching vibrations of these species. (C) 1998 American Institute of Physics. [References: 22]
机译:已对各种质子结合的稀有气体二聚体Rg(2)H(+)和(RgHRg')(+)(Rg = Ar,Kr或Xe,且Rg不等于Rg')进行了密度泛函理论计算。结合使用BP86方法和高斯分割价基集(DZVP)或数字分割价基集(DN **)。以DN **为基础的计算代表了第一个计算,其中针对三个Rg(2)H(+)阳离子的非对称拉伸波数,针对实验数据的趋势获得了正确的定性一致性。还获得了混合稀有气体物种(ArHKr)(+)的反对称拉伸波数的良好定性一致性。对于含氙的混合稀有气体阳离子,与实验波数的一致性不好,就像任何上述阳离子的DZVP基组的情况一样。据信这是由于这些基础集无法预测这些物种的某些物理和化学特性。 Rg(2)H(+)阳离子的反对称拉伸理论和实验之间的定量一致性得到了改善,这是因为四个径向氩原子距中心H固定距离放置,目的是模仿基质环境。基于这些计算,预测了这些物种的解离能与氢同位素的逆相关性。对于对称拉伸振动,没有中心原子同位素依赖性的预测。使用多原子模型,我们重新分析了先前发布的Xe2H +和Xe2D +的结合带数据,并得出结论,没有证据表明这些物种的对称拉伸振动具有反同位素依赖性。 (C)1998美国物理研究所。 [参考:22]

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号