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LiClO4 PC NMR ¡ª 4.2 Yeager H L¡¢Fedyk J D¡¢Parker R J. Spectroscopic studies of ionic solvation in propylene carbonate. J Phys Chem, 1973, 77(20): 2407-2410. ÂíÔ½ ÍõÇï¾ý
LiClO4 PC IR¡¢Raman 0.5¡«4.98M 4.4¡«2.0 Xuan X P¡¢Wang J J¡¢Tang J M. Phys Chem Liquids, 2001, 39: 327. ÂíÔ½ ÍõÇï¾ý
LiClO4 EC Raman 0.12¡«6.61M 5.9¡«3.2 Nagasubramanian, G.¡¢Shen, D. H.¡¢Surampudi, S. Lithium superacid salts for secondary lithium batteries. Electrochim Acta, 1995, 40(13/14): 2277-2280. ÂíÔ½ ÍõÇï¾ý
LiClO4 EC Raman 0.1¡«1.0M 4.9¡«4.1 Hyodo S A¡¢Okabayashi K. Raman intensity study of local structure in non-aqueous electrolyte solutions?II. Cation?solvent interaction in mixed solvent systems and selective solvation. Electrochim Acta, 1989, 34(11):1551-1561. ÂíÔ½ ÍõÇï¾ý
LiClO4 DMF IR¡¢Raman 0¡«4.5M 6.0¡«5.6 James D W¡¢Mayes R E.Ion-ion-solvent interactions in solution. 8. Spectroscopic studies of the lithium perchlorate/N,N-dimethylformamide system. J Phys Chem, 1984, 88(3): 637-642. ÂíÔ½ ÍõÇï¾ý
LiClO4 ±ûͪ Raman 0.18¡«4.1M 4.9¡«2.8 ÐùСÅó¡¢Íõ¼ü¼ª¡¢ÕÔÑ׿¿ËÀÝ. ¸ßŨ¶ÈLiClO4/±ûͪÈÜÒºÖÐÀë×Ó-ÈܼÁºÍÀë×Ó-Àë×ÓµÄÏ໥×÷ÓÃ. »¯Ñ§Ñ§±¨£¬2005, 63(18): 1693-1698. ÂíÔ½ ÍõÇï¾ý
LiClO4 ±ûͪ Raman 0¡«4.0 3.4¡«2.48 James D W¡¢Mayes R E. Ion-ion-solvent interactions in solution. Aqueous solutions of nitrates of cations from Groups 2A and 3A. Aust J Chem, 1982, 35(9): 1793-1806. ÂíÔ½ ÍõÇï¾ý
LiClO4 SL Raman 0.59¡«3.33M 3.4¡«1.7 Burba C M¡¢Frech R. Spectroscopic Measurements of Ionic Association in Solutions of LiPF6. J Phys Chem B, 2005, 109(31): 15161-15164. ÂíÔ½ ÍõÇï¾ý
LiAsF6 MA Raman 0.18¡«4.1M 4.9¡«2.8 Deng Z Y¡¢ Irish D E. A Raman spectral study of solvation and ion association in the systems LiAsF6/CH3CO2CH3 and LiAsF6/HCO2CH3. Can J Chem, 1991, 69(11): 1766-1773. ÂíÔ½ ÍõÇï¾ý
LiAsF6 ±ûͪ Raman 0.2¡«4.1M 4.3¡«3.4 Deng Z Y¡¢ Irish D E. A Raman spectral study of solvation and ion association in the systems LiAsF6/CH3CO2CH3 and LiAsF6/HCO2CH3. Can J Chem, 1991, 69(11): 1766-1773. ÂíÔ½ ÍõÇï¾ý
LiAsF7 ±ûͪ Raman 0.8¡«4.1 4.6¡«3.1 Deng Z Y¡¢Irish D E. Raman spectral studies of ion association and solvation in solutions of LiAsF6?acetone. Can J Chem Soc Faraday Trans, 1992, 88: 2891-2896. ÂíÔ½ ÍõÇï¾ý
LiAsF6 DMC Raman 0.2¡«2.0M 2.7¡«2.1 Doucey L¡¢Revault M¡¢Lautie A¡¢Chausse A¡¢Messinaet R. A study of the Li/Li+ couple in DMC and PC solvents: Part 1: Characterization of LiAsF6/DMC and LiAsF6/PC solutions. Electrochim Acta, 1999, 44(14): 2371-2377. ÂíÔ½ ÍõÇï¾ý
LiCF3SO3 ±ûͪ Raman 1.39¡«6.05M 2.37¡«1.8 Alia J M¡¢Edwards H G M. A systematic FT-Raman spectroscopic study of twelve bis-thiourea complexes, A(tu)2B2 (A=Zn, Cd, Hg; B=Cl, Br, I, SCN). Vib Spectrosc, 1999, 55(12): 2423-2435. ÂíÔ½ ÍõÇï¾ý
LiCF3SO3 DMF Raman 1.15¡«5.19M 3.76¡«2.5 Alia J M¡¢Edwards H G M. A systematic FT-Raman spectroscopic study of twelve bis-thiourea complexes, A(tu)2B2 (A=Zn, Cd, Hg; B=Cl, Br, I, SCN). Vib Spectrosc, 1999, 55(12): 2423-2435. ÂíÔ½ ÍõÇï¾ý
LiCF3SO3 DMSO Raman 1¡«4.46M 3.52¡«2.52 Alia J M¡¢Edwards H G M. A systematic FT-Raman spectroscopic study of twelve bis-thiourea complexes, A(tu)2B2 (A=Zn, Cd, Hg; B=Cl, Br, I, SCN). Vib Spectrosc, 1999, 55(12): 2423-2435. ÂíÔ½ ÍõÇï¾ý
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