...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >Understanding the unusual g-values and the spin density distribution of hydrogen atoms trapped in silasesquioxanes
【24h】

Understanding the unusual g-values and the spin density distribution of hydrogen atoms trapped in silasesquioxanes

机译:了解硅倍半氧烷中捕获的氢原子的异常g值和自旋密度分布

获取原文
获取原文并翻译 | 示例
           

摘要

In a recent EPR study, Gross et al. (B. Gross, H. Dilger, R. Scheuermann, M. Pach and E. Roduner, J. Phys. Chem. A, 2001, 105, 10012) found that hydrogen atoms trapped in silasesquioxanes unexpectedly exhibit g-values significantly larger than the free-electron value, with an appreciable dependence on the external substituents of the cage. Here it is shown by density functional calculations and detailed analyses of the g-values that (a) the positive g-shifts are predominantly due to spin-orbit coupling from the cage oxygen atoms; (b) in second-order perturbation theory the g-shifts arise mainly from couplings of t(1g), oxygen-based cage orbitals to the a(1g) singly occupied molecular orbital, and (c) the reduction of the g-shifts by external substituents is mainly caused by lower spin density on the cage oxygen atoms, due in part to reduced delocalization of the singly occupied MO onto the cage. Calculations with the hydrogen atom displaced from the center of the cage provide explanations for the negligible temperature dependence of the g-values compared to an experimentally notable dependence of the hyperfine couplings. Large direct halogen spin-orbit contributions and negative g-shifts are predicted for systems with heavy halogen atoms as external substituents. Comparison of different exchange-correlation functionals, and of spin-restricted and -unrestricted calculations reveals unexpected trends for spin density distribution and g-values: Spin polarization increases the computed g-shifts, whereas the admixture of Hartree-Fock exchange in hybrid functionals decreases them. [References: 49]
机译:在最近的EPR研究中,Gross等。 (B. Gross,H. Dilger,R. Scheuermann,M. Pach和E. Roduner,J.Phys.Chem.A,2001,105,10012)发现,硅倍半氧烷中捕获的氢原子出乎意料地显示出大于自由电子值,对笼子的外部取代基有明显的依赖性。在此通过密度泛函计算和对g值的详细分析表明:(a)正g位移主要是由于笼氧原子的自旋轨道耦合引起的; (b)在二阶微扰理论中,g位移主要是由t(1g),基于氧的笼形轨道与a(1g)单占据的分子轨道的耦合引起的;以及(c)g位移的减小外部取代基的取代主要是由于笼中氧原子的自旋密度降低,部分原因是由于单占据的MO在笼中的离域减少。用氢原子从笼子中心移开的计算结果提供了相对于实验上显着的超精细偶联依赖性,g值可忽略的温度依赖性的解释。对于具有重卤素原子作为外部取代基的系统,预计会有较大的直接卤素自旋轨道贡献和负g位移。比较不同的交换相关函数,以及自旋限制和无限制的计算,揭示了自旋密度分布和g值的出乎意料的趋势:自旋极化增加了计算出的g位移,而Hartree-Fock交换在混合功能中的混合减少了他们。 [参考:49]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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