中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Thermodynamic Investigation Of Room Temperature Ionic Liquids:II The Low Temperature Heat Capacity Of 1-ethyl-3-methylimidazolium Ethyl Salfate (EMISE)

文献类型:会议论文

作者Tan ZC(谭志诚) ; 孙立贤等
出版日期2004-08-17
会议名称18th iupac conference on chemical thermodynamics and the 12th national conference on chemical thermodynamics and thermal analysis
会议日期2004-8-17
会议地点中国
页码446/1
通讯作者谭志诚
中文摘要the molar heat capacities of the room temperature ionic liquid emise were measured by an adiabatic calorimeter in temperature range from 80 to 354k as shown in fig. 1, and no thermal anomaly was observed or no phase transition took place in temperature range for solid from 80 k to 174 k, in the temperature range for glass state from 181 k to 230 k and for liquid from 256 k to 354 k, respectively. the dependence of the molar heat capacity on temperature is given as a function of the reduced temperature x by empirical equations. for 80—174 k cp,m = 177.6 + 47.45x + 2.330x2 + 0.3640x3 + 1.529x4 (j•k-1•mol-1) (1) and for 181—230 k cp,m = 376.7 + 11.45x - 1.398x2 + 0.08100x3 + 1.608x4 (j•k-1•mol-1) (2) and for 256—354 k cp,m = 404.9 + 14.61x + 1.221x2 (j•k-1•mol-1) (3) . according the empirical equation and thermodynamic relationship, the values of thermodynamic function of the emise relative to 298.15 k were calculated in the temperature 255~350 k with 5 k intervals. the glass translation of emise occurred at 177.65 k, the enthalpy and entropy of the glass transition were calculated to beδhg= 732.9 jmol-1 andδsg= 4.126 jk-1mol-1, respectively. the result showed that the milting point of the emise is 251.07 k. the molar heat and entropy of fusion were calculated to be δhm = 1348jmol-1 and δsm = 5.369 jk-1mol-1.
会议主办者中国化学会
学科主题物理化学
语种中文
源URL[http://159.226.238.44/handle/321008/111780]  
专题大连化学物理研究所_中国科学院大连化学物理研究所
推荐引用方式
GB/T 7714
Tan ZC,孙立贤等. Thermodynamic Investigation Of Room Temperature Ionic Liquids:II The Low Temperature Heat Capacity Of 1-ethyl-3-methylimidazolium Ethyl Salfate (EMISE)[C]. 见:18th iupac conference on chemical thermodynamics and the 12th national conference on chemical thermodynamics and thermal analysis. 中国. 2004-8-17.

入库方式: OAI收割

来源:大连化学物理研究所

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