Ultrasonic relaxation and fast chemical kinetics of some carbohydrate aqueous solutions

被引:44
|
作者
Behrends, R
Cowman, MK
Eggers, F
Eyring, EM
Kaatze, U
Majewski, J
Petrucci, S
Richmann, KH
Riech, M
机构
[1] POLYTECH INST NEW YORK,DEPT CHEM,FARMINGDALE,NY 11735
[2] POLYTECH INST NEW YORK,WEBER RES INST,FARMINGDALE,NY 11735
[3] MAX PLANCK INST BIOPHYS CHEM,D-37077 GOTTINGEN,GERMANY
[4] UNIV GOTTINGEN,DRITTES PHYS INST,D-37073 GOTTINGEN,GERMANY
[5] UNIV UTAH,DEPT CHEM,SALT LAKE CITY,UT 84112
关键词
D O I
10.1021/ja9632623
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Molecular relaxation properties of the monosaccharides (a) D-glucose, (b) methyl beta-D-glucopyranoside, (c) methyl alpha-D-mannopyranoside, (d) D-xylose, (e) D-arabinose, (f) methyl beta-D-xylopyranoside, (g) methyl beta-D-arabinopyranoside, (h) methyl alpha-L-(6-deoxy)mannopyranoside, and (i) 1,6-anhydro-beta-D-glucopyranoside, all in aqueous solution, have been studied using broad band ultrasonic spectrometry in the frequency range 0.2-2000 MHz. Ultrasonic excess absorption with relaxation characteristics near 80 MHz was found for glucose and the methyl glucosides of D-glucose and D-mannose, but no relaxation process was detected for the other monosaccharides in the same frequency range. From structural aspects it is deduced that the most likely process causing the observed relaxation is the rotation of the exocyclic -CH2OH group, placing rotational isomerization on the nanosecond time scale. Relaxation parameters for D-glucose and methyl beta-D-glucopyranoside solutions were further investigated as a function of concentration and temperature, in order to confirm the assignment of the relaxation process, and to determine some of its thermodynamic and kinetic parameters.
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页码:2182 / 2186
页数:5
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