EFFECT OF REAGENT VIBRATION ON THE H+HOD REACTION - AN EXAMPLE OF BOND-SPECIFIC CHEMISTRY

被引:170
作者
BRONIKOWSKI, MJ [1 ]
SIMPSON, WR [1 ]
ZARE, RN [1 ]
机构
[1] STANFORD UNIV,DEPT CHEM,STANFORD,CA 94305
关键词
D O I
10.1021/j100112a021
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
OH and OD product branching ratios and internal state distributions have been measured in a state-to-state study of the reaction H+HOD(nu1,nu2,nu3)-->OH(v,N)(OD(v,N))+HD(H2). The HOD molecules are prepared in a specific vibrational level (one or two J states) by infrared excitation of thermal HOD using a tunable optical parametric oscillator. Fast (''hot'') H atoms are generated by laser photolysis of HI at 266 nm, and the OH and OD reaction products are probed quantum-state-specifically by laser-induced fluorescence. The OD:OH product branching ratios demonstrate that we achieve bond-specific chemistry at the lowest possible level of vibrational excitation for the H + HOD reaction: excitation of either bond with one quantum of vibration leads to selective cleavage of that bond. The OD:OH ratio is 1.38 +/- 0. 14 for the reaction H + HOD(0,0,0) (ground-state HOD). In contrast, this ratio is greater than 25:1 for H + HOD(0,0,1) and less than 1:5.8 for H + HOD(1,0,0) (i.e.,OH:OD > 5.8:1). Here (0,0,1) and (1,0,0) denote the O-Hand O-D stretch fundamentals, respectively. We find that excitation of these stretching vibrations increases the reaction cross section by a factor of as much as 120 over the increase resulting from an equivalent amount of extra translational energy, which is the behavior expected for a reaction with a late barrier. These results can also be understood in terms of a simple geometric model of the reaction, wherein vibrational excitation widens the cone of acceptance for reaction. The reaction H + HOD(1,0,0) produces a small amount of OD(v=1), which is approximately 5% of the amount of OH(v=0) produced. No vibrationally excited OH or OD was observed in the reactions with HOD(0,0,1) or HOD(0,0,0). OH and OD product rotational and electronic fine-structure distributions were also measured, as were the product state distributions for the reactions H + H2O and H + D2O (for comparison to the title reaction). All rotational distributions are well described by temperatures( i.e., Boltzmann distributions); OD products are consistently hotter than OH products (930 K vs 660 K). This observation suggests that rotational ''citation of the hydroxyl product occurs mainly through impulsive energy release in the breaking of the OH or OD bond. The PI(A')/PI(A'') LAMBDA-doublet ratio is greater than 4 in the high-J limit, which also supports this impulsive model. All of these results support the well-established picture that the nonreacting OH or OD bond acts as a ''spectator'' in this reaction.
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页码:2194 / 2203
页数:10
相关论文
共 61 条
[51]   BOND-SELECTED BIMOLECULAR CHEMISTRY - H+HOD(4-NU-OH)-]OD+H2 [J].
SINHA, A ;
HSIAO, MC ;
CRIM, FF .
JOURNAL OF CHEMICAL PHYSICS, 1990, 92 (10) :6333-6335
[52]   LINE POSITIONS AND STRENGTHS OF HDO IN THE 2400-3300-CM-1 REGION [J].
TOTH, RA ;
GUPTA, VD ;
BRAULT, JW .
APPLIED OPTICS, 1982, 21 (18) :3337-3347
[53]   LINE POSITIONS AND STRENGTHS IN THE (001), (110), AND (030) BANDS OF HDO [J].
TOTH, RA ;
BRAULT, JW .
APPLIED OPTICS, 1983, 22 (06) :908-926
[54]   STATISTICAL-DIABATIC MODEL FOR STATE-SELECTED REACTION-RATES - THEORY AND APPLICATION OF VIBRATIONAL-MODE CORRELATION-ANALYSIS TO OH(NOH)+H2(NHH)-]H2O+H [J].
TRUHLAR, DG ;
ISAACSON, AD .
JOURNAL OF CHEMICAL PHYSICS, 1982, 77 (07) :3516-3522
[55]   THEORETICAL-STUDY OF THE POTENTIAL-ENERGY SURFACE FOR OH+H-2 [J].
WALCH, SP ;
DUNNING, TH .
JOURNAL OF CHEMICAL PHYSICS, 1980, 72 (02) :1303-1311
[56]  
WANG D, IN PRESS J CHEM PHYS
[57]  
WANG D, UNPUB
[58]  
WEAST RC, 1981, CRC HDB CHEM PHYSICS, pF183
[59]  
WOLFRUM J, 1983, REACTIONS SMALL TRAN, pCH3
[60]   VIBRATIONAL MODE-SPECIFIC ENERGY-CONSUMPTION - TRANSLATIONAL AND VIBRATIONAL-STATE DEPENDENCE OF THE BA+N2O(V1,V2,V3)-]BAO-STAR+N2 REACTION [J].
WREN, DJ ;
MENZINGER, M .
FARADAY DISCUSSIONS, 1979, 67 :97-109