FLUORESCENCE-DETECTED INFRARED-ULTRAVIOLET AND RAMAN-ULTRAVIOLET DOUBLE-RESONANCE IN ACETYLENE GAS - STUDIES OF SPECTROSCOPY AND ROTATIONAL ENERGY-TRANSFER

被引:23
作者
CHADWICK, BL [1 ]
MILCE, AP [1 ]
ORR, BJ [1 ]
机构
[1] MACQUARIE UNIV,SCH CHEM,N RYDE,NSW 2109,AUSTRALIA
关键词
D O I
10.1139/p94-124
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Fluorescence-detected Raman-ultraviolet and infrared-ultraviolet double resonance (DR) spectroscopy enables state-selective studies of rotational and vibrational energy transfer in gas-phase acetylene (C2H2) and its deuterated isotopomers (C2HD, C2D2). The Raman-UV DR approach entails pulsed coherent Raman excitation in the nu(2) rovibrational band of C2H2(g), followed by fluorescence-detected rovibronic probing of the resulting rovibrational population distributions. Corresponding IR-UV DR experiments employ a line-tunable, pulsed CO2 laser to excite rovibrational transitions in the 2 nu(4) band of C2HD(g) and in the (nu(4) + nu(5)) band of C2D2(g), with similar fluorescence-detected rovibronic probing. These time-resolved DR spectroscopic techniques provide rotationally specific information on collision-induced molecular energy transfer in acetylene. This paper extends previous Raman-UV DR spectroscopic studies of C2H2 and presents fresh IR-UV DR spectra of gas-phase C2HD and C2D2, including evidence of a novel two-step excitation sequence in which a single CO2-laser pulse promotes C2D2 by successive transitions in the (nu(4) + nu(5)) and (2 nu(4) + 2 nu(5) - nu(4) - nu(5)) absorption bands. Kinetic measurements and mechanistic observations are also reported for collision-induced rotational energy transfer in acetylene gas, complementing other investigations of rotationally resolved vibrational energy transfer.
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收藏
页码:939 / 953
页数:15
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