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Protolytic equilibrium in lyophilic nanosized dispersions ... - IUPAC

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<strong>Protolytic</strong> <strong>equilibrium</strong> <strong>in</strong> <strong>lyophilic</strong> <strong>dispersions</strong> 1503<br />

39. M. Pesavento. J. Chem. Soc., Faraday Trans. 88, 2035 (1992).<br />

40. (a) M. Hojo. Bunseki Kagaku 53, 1279 (2004); (b) M. Hojo. Kharkov Univ. Bull., Chem. Ser.<br />

Issue 626, 47 (2004); (c) B. Baruah, J. M. Roden, M. Sedgwick, N. M. Correa, D. C. Crans, N. E.<br />

Lev<strong>in</strong>ger. J. Am. Chem. Soc. 128, 12758 (2006).<br />

41. (a) C. Reichardt. Green Chem. 7, 339 (2005); (b) C. Reichardt. Org. Prog. Res. Develop. 11, 105<br />

(2007).<br />

42. L. E. Strong, C. A. Kraus. J. Am. Chem. Soc. 72, 166 (1950).<br />

43. (a) Y. Pocker, R. F. Buchholz. J. Am. Chem. Soc. 92, 2075 (1970); (b) Y. Pocker, J. C. Ciula. J.<br />

Am. Chem. Soc. 110, 2904 (1988); (c) Y. Pocker, J. C. Ciula. J. Am. Chem. Soc. 111, 4728 (1989).<br />

44. (a) C. J. Drummond, F. Grieser, T. W. Healy. Faraday Discuss. Chem. Soc. 81, 95 (1986); (b)<br />

M. A. Kessler, O. S. Wolfbeis. Chem. Phys. Lipids 50, 51 (1989); (c) R. S. Sarpal, M. Belletête,<br />

G. Durocher. J. Phys. Chem. 97, 5007 (1993).<br />

45. M. Nakagaki. Physical Chemistry of Membranes (Russian transl.), Mir, Moscow (1991).<br />

46. (a) P. Plien<strong>in</strong>ger, H. Baumgärtel. Ber. Bunsenges. Phys. Chem. 86, 161 (1986); (b) P. Plien<strong>in</strong>ger,<br />

H. Baumgärtel. Justus Liebigs Ann. Chem. 860 (1983); (c) R. Varadaraj, J. Bock, N. Brons,<br />

S. Pace. J. Phys. Chem. 97, 12991 (1993); (d) J. Kriwanek, R. Miller. Colloids Surf., A 105, 233<br />

(1995); (e) R. Helburn, Y. Dijiba, G. Mansour, J. Maxka. Langmuir 14, 7147 (1998); (f) A.<br />

Seeboth, J. Kriwanek, R. Vetter. J. Mater. Chem. 9, 2277 (1999); (g) L. P. Novaki, O. A. El Seoud.<br />

Phys. Chem. Chem. Phys. 1, 1957 (1999); (h) L. P. Novaki, O. A. El Seoud. Langmuir 16, 35<br />

(2000); (i) E. B. Tada, L. P. Novaki, O. A. El Seoud. J. Phys. Org. Chem. 13, 679 (2000); (j) N.<br />

O. Mchedlov-Petrossyan, N. A. Vodolazkaya, C. Reichardt. Colloids Surf., A 205, 215 (2002); (k)<br />

N. A. Vodolazkaya, N. O. Mchedlov–Petrossyan, G. Heckenkemper, C. Reichardt. J. Mol. Liq.<br />

107, 221 (2003); (l) E. Fuguet, C. Ráfols, E. Bosch, M. Rosés. Langmuir 19, 55 (2003); (m) N. O.<br />

Mchedlov-Petrossyan, Yu. V. Isaenko, S. T. Goga. Zh. Obshch. Khim. 74, 1871 (2004); (n)<br />

N. O. Mchedlov-Petrossyan, N. A. Vodolazkaya, A. A. Kornienko, E. L. Karyak<strong>in</strong>a, C. Reichardt.<br />

Langmuir 21, 7090 (2005); (o) M. O. Iwunze. Phys. Chem. Liq. 43, 195 (2005).<br />

47. K. Herodes, I. Leito, J. Koppel, C. Reichardt, I. A. Koppel. J. Phys. Org. Chem. 18, 1013 (2005).<br />

48. G. P. Gorbenko, N. O. Mchedlov-Petrossyan, T. A. Chernaya. J. Chem. Soc., Faraday Trans. 94,<br />

2117 (1998).<br />

49. S. R. Mente, M. Maroncelli. J. Phys. Chem. B 103, 7704 (1999).<br />

50. P. Fromherz. Faraday Discuss. Chem. Soc. 81, 139 (1986).<br />

51. T. W. Healy. Faraday Discuss. Chem. Soc. 81, 140 (1986).<br />

52. (a) K. Seguchi. Yukugaku 28, 20 (1979); (b) A. G. Yakubovskaya, N. A. Vodolazkaya, N. O.<br />

Mchedlov-Petrossyan. Kharkov Univ. Bull., Chem. Ser. Issue 731, 217 (2006).<br />

53. N. O. Mchedlov-Petrossyan, Yu. V. Isaenko, N. A. Vodolazkaya, S. T. Goga. Unpublished results.<br />

54. (a) J. Caspers, E. Goormaghtigh, J. Ferreira, R. Brasseur, M. Vandenbranden, J.-M. Ruysschaert.<br />

J. Colloid Interface Sci. 91, 546 (1983); (b) J. G. Petrov, D. Möbius. Langmuir 6, 746 (1990); (c)<br />

J. S. Noh, J. A. Schwarz. J. Colloid Interface Sci. 139, 139 (1990).<br />

55. H. Oshima, T. W. Healy, L. R. White. J. Colloid Interface Sci. 90, 17 (1982).<br />

56. Calculations made by A. V. Timiy and N. A. Vodolazkaya.<br />

57. (a) G. Gunarsson, B. Jönsson, H. Wennerström. J. Phys. Chem. 84, 3114 (1980); (b) T. Gilányi.<br />

J. Colloid Interface Sci. 125, 641 (1988).<br />

58. (a) C. Tanford. Physical Chemistry of Macromolecules, John Wiley, New York (1961); (b)<br />

M. Guéron, G. Weisbuch. J. Phys. Chem. 83, 1991 (1979); (c) M. Corti, V. Degiorgio. J. Phys.<br />

Chem. 85, 711 (1981); (d) D. W. McQuigg, J. I. Kaplan, P. L. Dub<strong>in</strong>. J. Phys. Chem. 96, 1973<br />

(1992); (e) T. Gilányi. Colloids Surf., A 104, 119 (1995); (f) K. Gunaseelan, K. Ismail. J. Colloid<br />

Interface Sci. 258, 110 (2003); (g) T. P. Souza, D. Zanette, A. E. Kawanami, L. de Rezende, H. M.<br />

Ishiki, A. T. do Amaral, H. Chaimovich, A. Agost<strong>in</strong>ho-Neto, I. M. Cuccovia. J. Colloid Interface<br />

Sci. 297, 292 (2006).<br />

© 2008 <strong>IUPAC</strong>, Pure and Applied Chemistry 80, 1459–1510

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