通过水代替有机溶剂来提纯2-丙基-4,5-1 H-咪唑二羧酸二乙酯和4-(1-羟基-1-甲基乙基)-2-丙基-1 H-咪唑-5-羧酸乙酯的新方法,使得改进工艺更加绿色简便。采用1 H NMR、13 C NMR、IR、MS谱图对反应后的产品和未知杂质进行结构鉴定,确证为...通过水代替有机溶剂来提纯2-丙基-4,5-1 H-咪唑二羧酸二乙酯和4-(1-羟基-1-甲基乙基)-2-丙基-1 H-咪唑-5-羧酸乙酯的新方法,使得改进工艺更加绿色简便。采用1 H NMR、13 C NMR、IR、MS谱图对反应后的产品和未知杂质进行结构鉴定,确证为一水合4-(1-羟基-1-甲基乙基)-2-丙基-1 H-咪唑-5-羧酸乙酯和4-乙酰基-2-丙基-1 H-咪唑-5-羧酸乙酯。对反应的可能机理进行初步研究。展开更多
The new room-temperature molten salt was prepared based on LiTFSI[LiNC(SO 2CF 3) 2] with OZO(C 3H 5NO 2) which were not reported in literature. Its thermal and electrochemical properties were studied by differential s...The new room-temperature molten salt was prepared based on LiTFSI[LiNC(SO 2CF 3) 2] with OZO(C 3H 5NO 2) which were not reported in literature. Its thermal and electrochemical properties were studied by differential scanning calorimetry, ac impedance spectroscopy and cyclic voltammertry respectively. The results indicated that the structure symmetry of the molecule was depressed and the extent of charges delocalization was expanded, because of introducing oxygen atom of differential electronegativity in OZO molecule. DSC analysis showed that the LiTFSI-OZO molten salt has the excellent thermal stability and its eutectic temperature is below about 223.15 K. Meanwhile, the conductivity of LiTFSI-OZO molten salt at a molar ratio of 1∶4.5 is 0.75×10 -3 S/cm at 298.15 K and 3.50×10 -3 S/cm at 333.15 K. CV analysis showed that the electrochemical window of the sample is about 4 V.展开更多
文摘通过水代替有机溶剂来提纯2-丙基-4,5-1 H-咪唑二羧酸二乙酯和4-(1-羟基-1-甲基乙基)-2-丙基-1 H-咪唑-5-羧酸乙酯的新方法,使得改进工艺更加绿色简便。采用1 H NMR、13 C NMR、IR、MS谱图对反应后的产品和未知杂质进行结构鉴定,确证为一水合4-(1-羟基-1-甲基乙基)-2-丙基-1 H-咪唑-5-羧酸乙酯和4-乙酰基-2-丙基-1 H-咪唑-5-羧酸乙酯。对反应的可能机理进行初步研究。
文摘The new room-temperature molten salt was prepared based on LiTFSI[LiNC(SO 2CF 3) 2] with OZO(C 3H 5NO 2) which were not reported in literature. Its thermal and electrochemical properties were studied by differential scanning calorimetry, ac impedance spectroscopy and cyclic voltammertry respectively. The results indicated that the structure symmetry of the molecule was depressed and the extent of charges delocalization was expanded, because of introducing oxygen atom of differential electronegativity in OZO molecule. DSC analysis showed that the LiTFSI-OZO molten salt has the excellent thermal stability and its eutectic temperature is below about 223.15 K. Meanwhile, the conductivity of LiTFSI-OZO molten salt at a molar ratio of 1∶4.5 is 0.75×10 -3 S/cm at 298.15 K and 3.50×10 -3 S/cm at 333.15 K. CV analysis showed that the electrochemical window of the sample is about 4 V.