Electrochemistry of Room-Temperature/ Articles about substances designated as ionic liquids have begun to appear with increasing regularity in chemistry journals around the world, страница 35

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J. G. Huddleston, A. E. Visser, W. M. Reichert, H. D. Willauer, G. A. Broker, and R. D. Rogers, Green Chem. 3 (2001) 156. 284

B. D. Fitchett, T. N. Knepp, and J. C. Conboy, J. Electrochem. Soc. 151 (2004) E219. 285

J. Jacquemin, P. Husson, A. A. H. Padua, and V. Majer, Green Chem. 8 (2006) 172. 286

J. A. Widegren, A. Laesecke, and J. W. Magee, Chem. Commun. (2005) 1610. 287

T. Katase, T. Onishi, S. Imashuku, K. Murase, T. Hirato, and Y. Awakura, Electrochemistry 73 (2005) 686. 288

H. Matsumoto, “Electrochemical Windows of Room-Temperature Ionic Liquids,” in: Electrochemical Aspects of Ionic Liquids, p. 35, H. Ohno, ed., WileyInterscience, New Jersey, 2005. 289

T. Tsuda, C. L. Hussey, H. Luo, and S. Dai, J. Electrochem. Soc. 153 (2006) D171. 290

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L. Cammarata, S. G. Kazarian, P. A. Salter, and T. Welton, Phys. Chem. Chem. Phys. 3 (2001) 5192. 292 C. D. Tran, S. H. D. P. Lacerda, and D. Oliveira, Appl. Spectrosc. 57 (2003) 152. 293 R. P. Swatloski, J. D. Holbrey, and R. D. Rogers, Green Chem. 5 (2003) 361. 294

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P. Wasserscheid. R. van Hal, and A. Bösmann, in: Proceedings of the Thirteenth International Symposium on Molten Salts, p. 146, P. C. Trulove, H. C. De Long, R. A. Mantz, G. R. Stafford, and M. Matsunaga, eds., 2002-19, The Electrochemical Society, Inc., Pennington, NJ, 2002. 298 C. Villagrán, M. Deetlefs, W. R. Pitner, and C. Hardacre, Anal. Chem. 76 (2004) 2118. 299

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S. Radosavljević, V. Šćepanović, S. Stević, and D. Milojković, J. Fluorine Chem. 13 (1979) 465. 302 P. C. Trulove and R. A. Mantz, “Electrochemical Properties of Ionic Liquids,” in: Ionic Liquids in Synthesis, p. 103, P. Wasserscheid and T. Welton, eds., WileyVCH, Weinheim, 2003. 303 J. H. Davis, Jr., C. M. Gordon, C. Hilgers, and P. Wasserscheid, “Synthesis and Purification of Ionic Liquids,” in: Ionic Liquids in Synthesis, p. 7, P. Wasserscheid and T. Welton, eds., Wiley-VCH, Weinheim, 2003. 304

I. Billard, G. Moutiers, A. Labet, A. E. Azzi, C. Gaillard, C. Mariet, and K. Lützenkirchen, Inorg. Chem. 42 (2003) 1726. 305

Y. Katayama, H. Onodera, M. Yamagata, and T. Miura, J. Electrochem. Soc. 151 (2004) A59. 306

R. G. Evans, O. V. Klymenko, S. A. Saddoughi, C. Hardacre, and R. G. Compton, J. Phys. Chem. B 108 (2004) 7878. 307

I. M. AlNashef, M. L. Leonard, M. C. Kittle, M. A. Matthews, and J. W. Weidner, Electrochem. Solid-State Lett. 4 (2001) D16.  308

M. C. Buzzeo, O. V. Klymenko, J. D. Wadhawan, C. Hardacre, K. R. Seddon, and R. G. Compton, J. Phys. Chem. A 107 (2003) 8872.

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M. C. Buzzeo, C. Hardacre, and R. G. Compton, Anal. Chem. 76 (2004) 4583. 311

Y. Katayama, K. Sekiguchi, M. Yamagata, and T. Miura, J. Electrochem. Soc. 152 (2005) E247. 312

K. Ding, T. Okajima, and T. Ohsaka, Electrochemistry 73 (2007) 35. 313