State-to-state Photodissociation Dynamics of Carbonyl Sulfide: S(3P)+CO(X1Σ+) Channel
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Graphical Abstract
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Abstract
The ultraviolet photolysis of carbonyl sulfide (OCS) has been studied via the time-sliced velocity map imaging at excitation wavelengths in the range of 212−250 nm. The S(3PJ=0,1,2)+CO(X1Σ+) product channel was investigated from the raw images of S(3PJ=0,1,2) atoms. From the S(3PJ=0,1,2) images, product total kinetic energy release distributions and spatial angular distributions were acquired, respectively. The CO(X1Σ+) product rovibrational state distributions and anisotropy parameters β values are markedly different for the three spin-orbit states of S(3PJ=0,1,2) and excitation wavelength. Based on the experimental results, we propose two possible dissociation mechanisms: the first dissociation route is 11A′→21A′→11A′(bent OCS)→23A″, which yields the S(3PJ=0,1,2) atoms in association with vibrationally cold but rotationally hot CO co-products. The second dissociation pathway, which corresponds to the excited 13A′ electronic state, produces S(3PJ=0,1,2) atoms in conjunction with the vibrationally hot and rotationally cold CO co-products.
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