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丙三醇浓溶液玻璃化转变与结构松弛参数DSC分析
作者单位:上海理工大学低温医学与食品冷冻研究所,上海,200093;上海理工大学低温医学与食品冷冻研究所,上海,200093;上海理工大学低温医学与食品冷冻研究所,上海,200093;上海理工大学低温医学与食品冷冻研究所,上海,200093;上海理工大学低温医学与食品冷冻研究所,上海,200093
基金项目:国家自然科学基金;Key Specialty Foundation of Shanghai Municipal Education Commission,Young Foundation of Shanghai Municipal Education Commission
摘    要:

关 键 词:玻璃化转变  丙三醇  差示扫描量热法  增塑常数  热容  松弛活化能  脆度

Glass Transition and Structure Relaxation Parameters of Glycerol/Water Mixtures with High Concentrations:A DSC Study
Gao Cai,Zhou Guoyan,Xu Yi,Hu Tongji,Hua Zezhao. Glass Transition and Structure Relaxation Parameters of Glycerol/Water Mixtures with High Concentrations:A DSC Study[J]. Chinese Journal of Chemical Physics, 2005, 18(3): 457-462. DOI: 10.1088/1674-0068/18/3/457-462
Authors:Gao Cai  Zhou Guoyan  Xu Yi  Hu Tongji  Hua Zezhao
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Abstract:In order to examine the effects of water contents and heating/cooling rates on the glass transition and the structure relaxation parameters of glycerol/water mixtures, five aqueous solutions (60%, 70%, 80%, 90% and 100%) were investigated using the differential scanning calorimetry. Four scanning rates (10, 15, 20, 25 K/min) were used to obtain the glass transition parameters. The fitting results of plasticization constants indicated that Gordon-Taylor relationship could not be used effectively without considering scanning rates and that point on calorimetric step was chosen as the glass transition temperature. The specific heat changes during glass transition processes were relative not only to water content but also to heating rates. With the increasing of water contents in glycerol aqueous solutions, the structure relaxation activation energies and dynamic fragilities were decreased. Since the thermodynamic fragilities were increased with the increasing of water content, so the dynamic fragility and thermodynamic fragility were changed inversely if the water contents were changed in glycerol/water mixtures.
Keywords:Glass transition   Glycerol   DSC   Plasticization constant   Specific heat   Activation energy   Fragility                    
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