Orientational relaxation and vibrational excitation transfer in methanol-carbon tetrachloride solutions

被引:92
作者
Gaffney, KJ [1 ]
Piletic, IR [1 ]
Fayer, MD [1 ]
机构
[1] Stanford Univ, Dept Chem, Stanford, CA 94305 USA
关键词
D O I
10.1063/1.1534580
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
Time and polarization resolved ultrafast infrared vibrational spectroscopy of the hydroxyl stretch of methanol dissolved in carbon tetrachloride has been utilized to investigate orientational relaxation and vibrational excitation transfer. The anisotropy decay of the deuterated hydroxyl stretch of methanol-d was measured in two solutions: Isotopically mixed 0.8 mol % methanol-d 23 mol % methanol-h in CCl4 and isotopically pure methanol-d at 26 mol % in CCl4. The anisotropy decay in the isotopically mixed methanol solution is a biexponential characterized by 1.7+/-0.7 ps and 17+/-3 ps time constants, with 40+/-10% of the decay occurring with the slower time constant. The biexponential anisotropy decay has been analyzed with a restricted orientational diffusion model that involves fast orientational diffusion within a cone of semi-angle theta(c), followed by slower, full orientational relaxation. The fast orientational relaxation occurs within a cone semi-angle of theta(c)=45degrees+/-5degrees, with a diffusion coefficient of D-c(-1)=13+/-5 ps. The slower anisotropy decay results from the full orientational diffusion and occurs with a diffusion coefficient of D-theta(-1)=100+/-20 ps. The anisotropy decay for isotopically pure methanol-d in CCl4 is much faster because of vibrational excitation transfer in addition to the orientational relaxation. The excitation transfer has been successfully analyzed as transition dipole-transition dipole mediated transfer using a theory developed for randomly distributed chromophores. (C) 2003 American Institute of Physics.
引用
收藏
页码:2270 / 2278
页数:9
相关论文
共 63 条
[1]  
ATKINS PW, 1994, PHYSICAL CHEM
[2]   Interplay between ultrafast polar solvation and vibrational dynamics in electron transfer reactions: Role of high-frequency vibrational modes [J].
Bagchi, B ;
Gayathri, N .
ELECTRON TRANSFER-FROM ISOLATED MOLECULES TO BIOMOLECULES, PT 2, 1999, 107 :1-80
[3]   DYNAMICS OF ACTIVATIONLESS REACTIONS IN SOLUTION [J].
BAGCHI, B ;
FLEMING, GR .
JOURNAL OF PHYSICAL CHEMISTRY, 1990, 94 (01) :9-20
[4]   Polar and nonpolar solvation dynamics, ion diffusion, and vibrational relaxation: Role of biphasic solvent response in chemical dynamics [J].
Bagchi, B ;
Biswas, R .
ADVANCES IN CHEMICAL PHYSICS, VOL 109, 1999, 109 :207-433
[5]   Contemporary issues in electron transfer research [J].
Barbara, PF ;
Meyer, TJ ;
Ratner, MA .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (31) :13148-13168
[6]   DIELECTRIC SPECTRA OF SOME COMMON SOLVENTS IN THE MICROWAVE REGION - WATER AND LOWER ALCOHOLS [J].
BARTHEL, J ;
BACHHUBER, K ;
BUCHNER, R ;
HETZENAUER, H .
CHEMICAL PHYSICS LETTERS, 1990, 165 (04) :369-373
[7]  
Berne B. J., 1976, DYNAMIC LIGHT SCATTE
[8]  
Bottcher C J F, 1978, THEORY ELECT POLARIZ, V2
[9]   DYNAMICS OF METHANOL-TETRACHLOROMETHANE MIXTURES - A DIELECTRIC-RELAXATION STUDY [J].
BUCHNER, R ;
BARTHEL, J .
JOURNAL OF MOLECULAR LIQUIDS, 1992, 52 :131-144
[10]   STATISTICAL-MECHANICS OF ISOMERIZATION DYNAMICS IN LIQUIDS AND TRANSITION-STATE APPROXIMATION [J].
CHANDLER, D .
JOURNAL OF CHEMICAL PHYSICS, 1978, 68 (06) :2959-2970