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首页> 外文期刊>The Journal of Chemical Physics >High-resolution electron spin resonance spectroscopy of XeF* In solid argon.The hyperfine structure constants as a probe of relativistic effects in the chemical bonding properties of a heavy noble gas atom
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High-resolution electron spin resonance spectroscopy of XeF* In solid argon.The hyperfine structure constants as a probe of relativistic effects in the chemical bonding properties of a heavy noble gas atom

机译:XeF *在固态氩气中的高分辨率电子自旋共振光谱。超细结构常数作为重惰性气体原子化学键合性质的相对论效应的探针

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Xenon fluoride radicals were generated by solid-state chemical reactions of mobile fluorine atoms with xenon atoms trapped in Ar matrix.Highly resolved electron spin resonance spectra of XeF'were obtained in the temperature range of 5-25 K and the anisotropic hyperfine parameters were determined for magnetic nuclei ~(19)F,~(129)Xe,and~(131)Xe using naturally occurring and isotopically enriched xenon.Signs of parallel and perpendicular hyperfine components were established from analysis of temperature changes in the spectra and from numerical solutions of the spin Hamiltonian for two nonequivalent magnetic nuclei.Thus,the complete set of components of hyperfine-and g-factor tensors of XeF'were obtained:~(19)F(A_(iso)=435,A_(dip)=1249 MHz)and ~(129)Xe(A_(iso)=-1340,A_(dip)=-485 MHz);g_(||)=1.9822 and g+-=2.0570.Comparison of the measured hyperfine parameters with those predicted by density-functional theory(DFT)calculations indicates,that relativistic DFT gives true electron spin distribution in the ~2sum~+ ground-state,whereas nonrelativistic theory underestimates dramatically the electron-nuclear contact Fermi interaction(A_(iso))on the Xe atom.Analysis of the obtained magnetic-dipole interaction constants(A_(dip))shows that fluorine 2p and xenon 5p atomic orbitals make a major contribution to the spin density distribution in XeF'.Both relativistic and nonrelativistic calculations give close magnetic-dipole interaction constants,which are in agreement with the measured values.The other relativistic feature is considerable anisotropy of g-tensor,which results from spin-orbit interaction.The orbital contribution appears due to mixing of the ionic ~2PI states with the ~2sum~+ ground state,and the spin-orbit interaction plays a significant role in the chemical bonding of XeF.
机译:氟化氙自由基是由活动氟原子与氙原子俘获在Ar基体中的固相化学反应生成的,在5-25 K的温度范围内获得了XeF'的高分辨电子自旋共振谱,并确定了各向异性超精细参数用天然存在的和同位素富集的氙制备〜(19)F,〜(129)Xe和〜(131)Xe的磁核。通过分析光谱中的温度变化和数值解,建立了平行和垂直超细组分的符号。两个不等价磁核的自旋哈密顿量的总和。因此,获得了XeF'的超精细和g因子张量的完整分量集:〜(19)F(A_(iso)= 435,A_(dip)= 1249) MHz)和〜(129)Xe(A_(iso)=-1340,A_(dip)=-485 MHz); g_(||)= 1.9822和g +-= 2.0570。测得的超精细参数与由密度泛函理论(DFT)计算表明,相对论DFT给出了真实的电子自旋分布在〜2sum〜+基态中,非相对论理论大大低估了Xe原子上的电子-核接触费米相互作用(A_(iso))。对获得的磁偶极相互作用常数(A_(dip))的分析表明氟2p和氙5p原子轨道对XeF'中的自旋密度分布起主要作用。相对论和非相对论计算都给出了接近的磁偶极相互作用常数,这与测量值一致。另一个相对论特征是相当大的各向异性由于自旋〜2PI态与〜2sum〜+基态的混合而产生轨道贡献,这是由于自旋轨道相互作用引起的。 XeF。

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