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Volumn 12, Issue 3, 1996, Pages 691-698

Tuning of micellar structure and dynamics in aqueous salt-free solutions of cetyltrimethylammonium mono- and dichlorobenzoates

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EID: 0000733740     PISSN: 07437463     EISSN: None     Source Type: Journal    
DOI: 10.1021/la950965+     Document Type: Article
Times cited : (84)

References (60)
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    • In addition to works referenced in 1a and 1b, useful recent references on light scattering and rheological studies of the CTAB/ NaSal systems in particular may be found in the following: (a) Nemoto, N.; Kuwahara, M.; Yao, M.-L.; Osaki, K. Langmuir 1995, 11, 30. (b) Shikata, T.; Pearson, D. S. Langmuir 1994, 10, 4027.
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    • In addition to works referenced in 1a and 1b, useful recent references on light scattering and rheological studies of the CTAB/ NaSal systems in particular may be found in the following: (a) Nemoto, N.; Kuwahara, M.; Yao, M.-L.; Osaki, K. Langmuir 1995, 11, 30. (b) Shikata, T.; Pearson, D. S. Langmuir 1994, 10, 4027.
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    • For a theoretical treatment of micellar growth in poorly screened solutions, see: (a) Safran, S.; Pincus, P.; Cates, M. E.; Mackintosh, F. J. Phys. (Paris) 1990, 51, 503. (b) Mackintosh, F.; Safran, S.; Pincus, P. Europhys. Lett. 1990, 12, 697.
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    • For an elegant application to CTASal micelles in 0.5 M NaCl, see Berret, J.-F.; Appell, J.; Porte, G. Langmuir 1993, 9, 2851. Information on L̄ in the entangled regime is not available using scattering methods.
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    • (a) A preliminary report on SANS of CTA2ClBz and CTA4CIBz appeared in the following: Magid, L. J. in Ordering and Organization in Ionic Solutions; Ise, N., Sogami, L, Eds.; World Scientific Publishing Co.: Singapore, 1988; pp 288-301.
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    • (b) For a determination of the persistence length of the CTA35ClBz micelles, see: Butler, P. D.; Magid, L. J. In Structure and Flow in Surfactant Solutions; Herb, C. A., Prud'homme, R. K., Eds.; ACS Symposium Series 578; American Chemical Society: Washington, DC; 1994; p 250.
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    • (d) For an example of the kinetics of alignment for CTASSClBz under Couette shear, see: Butler, P. D.; Magid, L. J.; Kreke, P. J.; Hayter, J. B.; Hamilton, W. A.; Hammouda, B. In Neutron Scattering in Materials Science II; Neumann, D. A., Russell, T. P., Wuensch, B. J., Eds.; MRS Symposium Proceedings Vol. 376; 1994.
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    • c) of 2.15-2.3 nm are obtained.
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    • The source of the small differences in C*'s determined by different experimental techniques is most likely not an isotope effect. Scattering measurements (light scattering and/or SANS) for aqueous solutions of cationic surfactants such as CTAB or anionic surfactants such as SDS show only modest isotope effects on micellar aggregation numbers (on the order of 10%). See for example: Berr, S. S.; Caponetti, E.; Johnson, J. S.; Jones, R. R. M.; Magid, L. J. J. Phys. Chem. 1986, 90, 5766. Chang, N. J.; Kaler, E. W. J. Phys. Chem. 1985, 89, 2996.
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    • The source of the small differences in C*'s determined by different experimental techniques is most likely not an isotope effect. Scattering measurements (light scattering and/or SANS) for aqueous solutions of cationic surfactants such as CTAB or anionic surfactants such as SDS show only modest isotope effects on micellar aggregation numbers (on the order of 10%). See for example: Berr, S. S.; Caponetti, E.; Johnson, J. S.; Jones, R. R. M.; Magid, L. J. J. Phys. Chem. 1986, 90, 5766. Chang, N. J.; Kaler, E. W. J. Phys. Chem. 1985, 89, 2996.
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.