ELECTRON-SPIN-RESONANCE STUDIES OF (CH3F+)-C-12, (CH3F+)-C-13, AND (CH2DF+)-C-12 IN NEON MATRICES AT 4-K - COMPARISON WITH THEORETICAL CALCULATIONS

被引:18
作者
KNIGHT, LB [1 ]
GREGORY, BW [1 ]
HILL, DW [1 ]
ARRINGTON, CA [1 ]
MOMOSE, T [1 ]
SHIDA, T [1 ]
机构
[1] KYOTO UNIV,DEPT CHEM,KYOTO 606,JAPAN
关键词
SYMMETRY-ADAPTED-CLUSTER; CONFIGURATION-INTERACTION THEORY; SHELL ORBITAL THEORY; SAC CI THEORIES; EXCITED-STATES; CATION RADICALS; MOLECULAR-IONS; SOLID NEON; VARIATIONAL DETERMINATION; SPECTROSCOPIC DETECTION;
D O I
10.1063/1.460335
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Various isotopic forms of the methyl fluoride cation 12CH3F+, 13CH3F+, and 12CH2DF+ have been generated by photoionization at 16.8 eV and separately by electron bombardment at 50 eV. The first electron-spin-resonance (ESR) results are reported for this radical cation which was isolated in neon matrices at 4 K. The measured A tensors or nuclear hyperfine parameters were compared with the results obtained from various computational approaches. Surprising observations were the large amounts of spin density on the methyl group, especially the hydrogen atoms, and the extreme differences in the deuterated spectra compared to the nondeuterated case. The presence of a single D atom apparently acts to prevent dynamic Jahn-Teller averaging which makes the methyl hydrogens equivalent on the ESR time scale. Such a dramatic Jahn-Teller effect has been previously observed for the similar methane cations CH4+ and CH2D2+. The magnetic parameters for CH2DF+ in neon at 4 K are g(x) = 2.0032(5), g(y) = 2.0106(8), and g(z) = 2.0120(5); for H:A(x) = 483(1), A(y) = 476(1), and A(z) = 483(1) MHz; for D: \A(x)\ = 5.0(3), \A(y)\ < 3, and \A(z)\ = 7.1(3) MHz; for F-19:A(x) = 965(1), A(y) = -130(2), and A(z) = - 166(1) MHz. For CH3F+, the g tensor and F-19A tensor were similar to those above but the H atoms were equivalent with values of A(x) = 317(1), A(y) = 323(2), and A(z) = 312 MHz.
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页码:67 / 79
页数:13
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