Novel method to detect the volumetric glass → liquid transition at high pressures:: Glycerol as a test case

被引:13
作者
Elsaesser, Michael S.
Kohl, Ingrid
Mayer, Erwin
Loerting, Thomas
机构
[1] Univ Innsbruck, Inst Phys Chem, A-6020 Innsbruck, Austria
[2] Univ Innsbruck, Inst Gen Inorgan & Theoret Chem, A-6020 Innsbruck, Austria
关键词
D O I
10.1021/jp0708897
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
We report a novel method of detecting the glass -> liquid transition at high pressures, which comprises measuring the relative volume change incurred upon heating glassy samples into the liquid state. We show data on glycerol in the pressure range 0.050-1.00 GPa to demonstrate the viability of the method. The reversible glass -> liquid transition is observed by means of a kink in the relative volume change on heating the sample isobarically, which is attributed to the glass -> liquid transition temperature T-g. This kink can only be observed in the second and subsequent heating cycles since it is superposed by a compaction in the first heating cycle. The isobaric thermal expansivity beta, which is closely related to the first derivative of this curve, shows the features expected for a glass -> liquid transition, including a sharp rise of beta(glass) in a narrow temperature interval to beta(viscous liquid) and an accompanying overshoot effect. Both T-g and the size of the overshoot effect vary in accordance with theory upon changing the ratio of cooling to heating rates. From the shape of this curve the onset, inflection, overshoot peak, and endpoint of the glass -> liquid transition can be extracted, which can be employed to calculate the reduced glass transition width as a measure for the fragility of the liquid. Comparison with literature data allows quantifying the accuracy of the liquid's thermal expansivity beta to be at least +/- 10%, while the error in beta is significantly larger for the expansivity of the glassy state. The reproducibility of the glass -> liquid transition temperature T-g is better than +/- 2 K. Our glycerol data confirms literature studies showing a nonlinear increase of T-g with increasing pressure (similar to 35 K/GPa on average), which is accompanied by an increase in fragility.
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收藏
页码:8038 / 8044
页数:7
相关论文
共 65 条
[21]  
FLEMING, 1897, P ROY SOC, V61, P324
[22]   The third law of thermodynamics evidence from the specific heats of glycerol that the entropy of a glass exceeds that of a crystal at the absolute zero [J].
Gibson, GE ;
Giauque, WF .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1923, 45 :93-104
[23]   Glass-transition temperature of water: A simulation study [J].
Giovambattista, N ;
Angell, CA ;
Sciortino, F ;
Stanley, HE .
PHYSICAL REVIEW LETTERS, 2004, 93 (04) :047801-1
[24]   HEAT-CAPACITY AND GLASS-TRANSITION BEHAVIOR OF AMORPHOUS ICE [J].
HANDA, YP ;
KLUG, DD .
JOURNAL OF PHYSICAL CHEMISTRY, 1988, 92 (12) :3323-3325
[25]   HIGH-PRESSURE VISCOSITY OF GLYCEROL MEASURED BY CENTRIFUGAL-FORCE VISCOMETRY [J].
HERBST, CA ;
COOK, RL ;
KING, HE .
NATURE, 1993, 361 (6412) :518-520
[26]   Thermodynamic determination of fragility in liquids and a fragile-to-strong liquid transition in water [J].
Ito, K ;
Moynihan, CT ;
Angell, CA .
NATURE, 1999, 398 (6727) :492-495
[27]   Liquid state of low-density pressure-amorphized ice above its Tg [J].
Johari, GP .
JOURNAL OF PHYSICAL CHEMISTRY B, 1998, 102 (24) :4711-4714
[28]   THE GLASS LIQUID TRANSITION OF HYPERQUENCHED WATER [J].
JOHARI, GP ;
HALLBRUCKER, A ;
MAYER, E .
NATURE, 1987, 330 (6148) :552-553
[29]   THERMAL-BEHAVIOR OF SEVERAL HYPERQUENCHED ORGANIC GLASSES [J].
JOHARI, GP ;
HALLBRUCKER, A ;
MAYER, E .
JOURNAL OF PHYSICAL CHEMISTRY, 1989, 93 (06) :2648-2652
[30]  
JOHARI GP, 1972, FARADAY S CHEM SOC, V3, P23