Energy partitioning following photodissociation of methyl iodide in the A band:: A velocity mapping study

被引:200
作者
Eppink, ATJB [1 ]
Parker, DH [1 ]
机构
[1] Catholic Univ Nijmegen, Dept Mol & Laser Phys, NL-6525 ED Nijmegen, Netherlands
关键词
D O I
10.1063/1.478051
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
Translational and internal energy partitioning in the methyl and iodine fragments formed from photodissociation of methyl iodide in the A-band region is measured using velocity mapping. Stare-selective detection combined with the very good image quality afforded by the two-dimensional imaging technique allow a detailed analysis of the kinetic energy and angular distributions. Product vibrational energy is, as previously known, mainly partitioned into nu(2), the umbrella mode of the methyl fragment,but a substantial fraction of molecules is also excited with one quantum of nu(1), the symmetric C-H stretch, especially at higher dissociation energies. Preliminary evidence is also presented for excitation of several quanta of nu(4), the asymmetric deformation mode. Rotational energy partitioning is similar for CH3 products formed in both the ground-state I(P-2(3/2)) and the spin-orbit excited I*(P-2(1/2)) channel for photodissociation across the full A-band spectrum. Dissociation of vibrationally excited molecules plays an increasingly important role at longer dissociation wavelengths. Two CH3I modes remain populated in the pulsed beam expansion, nu(2)(a(1)), the C-I stretch, and nu(6)(e), the methyl rock. Each reactant vibrational mode couples in a very specific manner into the I and I* dissociation channels. Trends in vibrational and rotational energy disposal are comparedwith recent theoretical predictions. Readjustment of many aspects of the ab initio multidimensional potential energy surfaces which have recently been calculated for CH3I appears to be necessary. The improved resolution offered by velocity mapping also allows a more accurate determination of the C-I bond energy. A dissociation energy of 2.41 +/- 0.02 eV is found. (C) 1999 American Institute of Physics. [S0021-9606(99)01102-2].
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页码:832 / 844
页数:13
相关论文
共 39 条
[1]   Full nine-dimensional ab initio potential energy surfaces and trajectory studies of A-band photodissociation dynamics: CH3I*->CH3+I, CH3+I*, and CD3I*->CD3+I, CD3+I* [J].
Amatatsu, Y ;
Yabushita, S ;
Morokuma, K .
JOURNAL OF CHEMICAL PHYSICS, 1996, 104 (24) :9783-9794
[2]   ABINITIO POTENTIAL-ENERGY SURFACES AND TRAJECTORY STUDIES OF A-BAND PHOTODISSOCIATION DYNAMICS - CH3I STAR-]CH3+I AND CH3+I STAR [J].
AMATATSU, Y ;
MOROKUMA, K ;
YABUSHITA, S .
JOURNAL OF CHEMICAL PHYSICS, 1991, 94 (07) :4858-4876
[3]   PHOTOFRAGMENTATION DYNAMICS OF CH3I AT 248 NM [J].
BARRY, MD ;
GORRY, PA .
MOLECULAR PHYSICS, 1984, 52 (02) :461-473
[4]  
BARRY MD, 1987, MOL PHYS, V61, P827
[5]  
BENSON SW, 1976, THERMOCHEMISTRY KINE
[6]   PHOTOFRAGMENT INVESTIGATIONS OF THE 280 NM PHOTODISSOCIATION OF METHYL-IODIDE USING REMPI I ATOM DETECTION [J].
BLACK, JF ;
POWIS, I .
CHEMICAL PHYSICS, 1988, 125 (2-3) :375-388
[7]   PHOTOFRAGMENT IMAGING - THE 266-NM PHOTOLYSIS OF CD3I [J].
CHANDLER, DW ;
JANSSEN, MHM ;
STOLTE, S ;
STRICKLAND, RN ;
THOMAN, JW ;
PARKER, DH .
JOURNAL OF PHYSICAL CHEMISTRY, 1990, 94 (12) :4839-4846
[8]   PHOTOFRAGMENT IMAGING - THE 266-NM PHOTODISSOCIATION OF CH3I [J].
CHANDLER, DW ;
THOMAN, JW ;
JANSSEN, MHM ;
PARKER, DH .
CHEMICAL PHYSICS LETTERS, 1989, 156 (2-3) :151-158
[9]   TWO-DIMENSIONAL IMAGING OF STATE-SELECTED PHOTODISSOCIATION PRODUCTS DETECTED BY MULTIPHOTON IONIZATION [J].
CHANDLER, DW ;
HOUSTON, PL .
JOURNAL OF CHEMICAL PHYSICS, 1987, 87 (02) :1445-1447
[10]   SYMMETRIC STRETCH EXCITATION OF CH3 IN THE 193.3 NM PHOTOLYSIS OF CH3L [J].
CONTINETTI, RE ;
BALKO, BA ;
LEE, YT .
JOURNAL OF CHEMICAL PHYSICS, 1988, 89 (05) :3383-3384