TRANSLATIONAL SPECTROSCOPY OF H(D) ATOM FRAGMENTS ARISING FROM THE PHOTODISSOCIATION OF H2S(D2S) - A REDETERMINATION OF D0(S-H)

被引:54
作者
MORLEY, GP [1 ]
LAMBERT, IR [1 ]
MORDAUNT, DH [1 ]
WILSON, SHS [1 ]
ASHFOLD, MNR [1 ]
DIXON, RN [1 ]
WESTERN, CM [1 ]
机构
[1] UNIV BRISTOL, SCH CHEM, BRISTOL BS8 1TS, AVON, ENGLAND
来源
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS | 1993年 / 89卷 / 21期
关键词
D O I
10.1039/ft9938903865
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
The technique of H/D atom photofragment translational spectroscopy has been used to further investigate the collision-free photodissociation of H2S and D2S molecules both in the near ultraviolet (at 218.2 and 221.6 nm) and in the vacuum ultraviolet (at 121.6 nm). Measurements of the H/D atom photofragment angular distributions confirms that the near UV dissociation occurs promptly, following a perpendicular photo-excitation. More than 99% of the resulting SH/SD fragments are formed in their ground vibronic level, with a ca. 3 : 2 preference in favour of the lower (2PI3/2) spin-orbit component. Product rotation accounts for ca. 1 % of the available energy in the case of H2S photolysis at these near UV wavelengths (ca. 2% in the case of D2S dissociation). The ground-state SH/SD photofragments can also be photolysed at these near UV excitation wavelengths. Simulations of the kinetic energy distribution of the resulting H/D atomic fragments show that the secondary photolysis also involves a perpendicular transition, and that the partner S atoms are formed in all three 3P(J) spin-orbit states. The product energy disposal following 121.6 nm photolysis of D2S closely parallels that deduced in an earlier study of H2S photodissociation at this same wavelength (Schnieder et al., J. Chem. Phys., 1990, 92, 7027). The D-atom kinetic energy spectrum shows clear evidence for the formation of rovibrationally excited SD(A 2SIGMA+) fragments amongst the primary products, and also suggests an important role for the three-body dissociation process leading to D + D + S(1D) atoms. Given D(o)o(HS-H) = 31 480 +/- 40 cm-1, the present results provide a refined value for the S-D bond strength in the D2S molecule; D(o)o(DS-D) = 32030 +/- 50 cm-1; for the SH and SD radical bond dissociation energies; D(o)o(S-H) = 29300 +/- 100 cm-1 and D(o)o(S-D) = 29700 +/- 100 cm-1, and an improved expression for the potential-energy function for the A 2SIGMA+ state of the mercapto radical.
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页码:3865 / 3875
页数:11
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