Startseite Surface-Active Properties of a Trimeric Sulfate-type Surfactant Derived from Glycerol
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Surface-Active Properties of a Trimeric Sulfate-type Surfactant Derived from Glycerol

  • Fan Liu , Kai Xu , Chang Xu und Hujun Xu
Veröffentlicht/Copyright: 9. Juli 2016
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Abstract

A trimeric sulfate-type surfactant was synthesized and the surface chemical properties and micellar behavior of this surfactant were investigated by surface tension and fluorescence measurements. The critical micelle concentration (CMC) and the surface tension at CMC both decreased with the increase of NaCl concentration. The thermodynamic parameters indicate that the micelle formation is entropy-driven. The micelle aggregation number was determined and changed little between 303 K and 313 K. All the experimental results show that the surface-active properties of the surfactant are insensitive to the temperature compared with conventional surfactants.

Kurzfassung

Ein trimeres Sulfattensid wurde synthetisiert und die Oberflächeneigenschaften und das mizellare Verhalten dieses Tensids wurden mittels Messung der Oberflächenspannung und der Fluoreszenz bestimmt. Die kritische Mizellenbildungskonzentration (CMC) und die Oberflächenspannung bei der CMC werden mit zunehmender NaCl-Konzentration reduziert. Die thermodynamischen Parameter zeigen, dass die Mizellenbildung von der Entropie gesteuert wird. Die Mizellenaggregationszahl wurde bestimmt und änderte sich zwischen 303 K und 313 K nur wenig. Alle experimentellen Ergebnisse zeigen, dass die oberflächenaktiven Eigenschaften des Tensids im Vergleich zu konventionellen Tensiden temperaturunempfindlich sind.


*Correspondence address, Prof. Hujun Xu, School of Chemical and Material Engineering, Jiangnan University, Lihu Avenue, Wuxi 214122, China, Tel.: +8613338103707, E-Mail:

Fan Liu and Kai Xu are postgraduates at Jiangnan University and are involved in synthesis and analysis of surfactants.

Chang Xu is currently engaged in surfactant industry.

Hujun Xu is an associate professor at Jiangnan University, P.R. China. He received his Ph.D. degree in 2005 from Nanjing University of Science and Technology, P.R. China. He has been involved in surfactants and detergents for over 30 years. He has published over 60 papers in the field of surfactants and detergents.


References

1. Zana, R.: Adv. Colloid Interface Sci.97 (2002) 205253. 10.1016/S0001-8686(01)00069-0Suche in Google Scholar

2. Menger, F. M. and Littau, C. A.: J. Am. Chem. Soc.115 (1993) 1008310090. 10.1021/ja00075a025Suche in Google Scholar

3. Kunieda, H., Masuda, N. and Tsubone, K.: Langmuir16 (2000) 64386444. 10.1021/la0001068Suche in Google Scholar

4. Kunieda, H., Kaneko, M., Feng, J. and Tsubone, K.: J. Oleo Sci.51 (2002) 761769. 10.5650/jos.51.761Suche in Google Scholar

5. Tsubone, K.: J. Colloid Interface Sci.261 (2003) 524528. 10.1016/S0021-9797(03)00088-2Suche in Google Scholar PubMed

6. Shukla, D. and Tyagi, V. K.: J. Oleo Sci.55 (2006) 381390. 10.5650/jos.55.381Suche in Google Scholar

7. Tehrani-Bagha, A. R. and Holmberg, K.: Langmuir26 (2010) 92769282. 10.1021/la1001336Suche in Google Scholar PubMed

8. Lv, J., Qiao, W. and Xiong, C.: Langmuir30 (2014) 82588267. 10.1021/la5016669Suche in Google Scholar PubMed

9. Xu, H., Liu, B., Kang, P. and Bao, X.: J. Surfactants Deterg.18 (2015) 297302. 10.1007/s11743-014-1655-5Suche in Google Scholar

10. Menger, F. M. and Littau, C. A.: J. Am. Chem. Soc.113 (1991) 14511452. 10.1021/ja00004a077Suche in Google Scholar

11. Song, L. D. and Rosen, M. J.: Langmuir12 (1996) 11491153. 10.1021/la950508tSuche in Google Scholar

12. Rosen, M. J., Mathias, J. H. and Davenport, L.: Langmuir15 (1999) 73407346. 10.1021/la9904096Suche in Google Scholar

13. Mathias, J. H., Rosen, M. J. and Davenport, L.: Langmuir17 (2001) 61486154. 10.1021/la010852sSuche in Google Scholar

14. Yoshimura, T., Yoshida, H., Ohno, A. and Esumi, K.: J. Colloid Interface Sci.267 (2003) 167172. 10.1016/S0021-9797(03)00694-5Suche in Google Scholar PubMed

15. Kim, T.-S., Kida, T., Nakatsuji, Y. and Ikeda, I.: Langmuir12 (1996) 63046308. 10.1021/la960669cSuche in Google Scholar

16. Esumi, K., Taguma, K. and Koide, Y.: Langmuir12 (1996) 40394041. 10.1021/la960230kSuche in Google Scholar

17. Zana, R., Levy, H., Papoutsi, D. and Beinert, G.: Langmuir11 (1995) 36943698. 10.1021/la00010a018Suche in Google Scholar

18. Yoshimura, T., Kusano, T., Iwase, H., Shibayama, M., Ogawa, T. and Kurata, H.: Langmuir28 (2012) 93229331. 10.1021/la301220ySuche in Google Scholar PubMed

19. Xu, H., Chen, D. and Cui, Z.: J. Surfactants Deterg.14 (2011) 167172. 10.1007/s11743-010-1213-8Suche in Google Scholar

20. Wu, C., Hou, Y., Deng, M., Huang, X., Yu, D., Xiang, J., Liu, Y., Li, Z. and Wang, Y.: Langmuir26 (2010) 79227927. 10.1021/la9048067Suche in Google Scholar PubMed

21. Yoshimura, T., Kimura, N., Onitsuka, E., Shosenji, H. and Esumi, K.: J. Surfactants Deterg.7 (2004) 6774. 10.1007/s11743-004-0290-1Suche in Google Scholar

22. Yoshimura, T., Ohno, A. and Esumi, K.: J. Colloid Interface Sci.272 (2004) 191196. 10.1016/j.jcis.2003.12.021Suche in Google Scholar PubMed

23. Yang, Y. and Wang, M.: Fine Chemicals10 (1993) 1820. 10.13550/j.jxhg.1993.04.009Suche in Google Scholar

24. Zhu, Y.-P., Masuyama, A. and Okahara, M.: Journal of the American Oil Chemists' Society67 (1990) 459463. 10.1007/bf02638962Suche in Google Scholar

25. Murguia, M. C. and Grau, R. J.: Synlett (2001) 12291232. 10.1055/s-2001-16060Suche in Google Scholar

26. Hoffmann, B. and Platz, G.: Curr. Opin. Colloid Interface Sci.6 (2001) 171177. 10.1016/S1359-0294(01)00075-9Suche in Google Scholar

27. Gorius, O., Bertho, J.-N. and Nuzillard, J.-M.: Anal. Chim. Acta440 (2001) 231237. 10.1016/S0003-2670(01)01066-2Suche in Google Scholar

28. Sharma, K. S., Hassan, P. A. and Rakshit, A. K.: Colloids Surf. A289 (2006) 1724. 10.1016/j.colsurfa.2006.04.004Suche in Google Scholar

29. Basu Ray, G., Chakraborty, I. and Moulik, S. P.: J. Colloid Interface Sci.294 (2006) 248254. 10.1016/j.jcis.2005.07.006Suche in Google Scholar PubMed

30. Hu, C., Li, R., Yang, H. and Wang, J.: J. Colloid Interface Sci.356 (2011) 605613. 10.1016/j.jcis.2011.01.062Suche in Google Scholar PubMed

31. Kaur, R., Kumar, S., Aswal, V. and Mahajan, R.: Colloid Polym. Sci.290 (2012) 127139. 10.1007/s00396-011-2526-5Suche in Google Scholar

32. Chauhan, S., Chauhan, M. S., Sharma, P., Rana, D. S. and Umar, A.: Fluid Phase Equilib.337 (2013) 3946. 10.1016/j.fluid.2012.09.003Suche in Google Scholar

33. Dahanayake, M., Cohen, A. W. and Rosen, M. J.: J. Phys. Chem.90 (1986) 24132418. 10.1021/j100402a032Suche in Google Scholar

34. Bumajdad, A. and Eastoe, J.: J. Colloid Interface Sci.274 (2004) 268276. 10.1016/j.jcis.2003.12.050Suche in Google Scholar PubMed

35. Almgren, M. and Swarup, S.: J. Phys. Chem.87 (1983) 876881. 10.1021/j100228a036Suche in Google Scholar

36. Muto, Y., Esumi, K., Meguro, K. and Zana, R.: J. Colloid Interface Sci.120 (1987) 162171. 10.1016/0021-9797(87)90335-3Suche in Google Scholar

37. Benrraou, M., Bales, B. L. and Zana, R.: The Journal of Physical ChemistryB 107 (2003) 1343213440. 10.1021/jp021714uSuche in Google Scholar

Received: 2015-11-28
Accepted: 2016-02-01
Published Online: 2016-07-09
Published in Print: 2016-07-15

© 2016, Carl Hanser Publisher, Munich

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