Home Physical Sciences Synthesis and Characterization of Series of Soft-Template Agents for Mesoporous Materials
Article
Licensed
Unlicensed Requires Authentication

Synthesis and Characterization of Series of Soft-Template Agents for Mesoporous Materials

  • Xiaofen Xu , Dongliang Liu and Daoping He
Published/Copyright: July 22, 2014
Become an author with De Gruyter Brill

Abstract

Quaternary ammonium surfactants 3a–d, with diether linkages in the backbone between hydrocarbon chains and the ammonium head groups, were synthesized as potential soft-template agents for the preparation of mesoporous materials. Varying the length of their carbon chains was expected to control the pore sizes of the corresponding mesoporous materials prepared. The critical micelle concentration (CMC) and γcmc (surface tension of the CMC) of these surfactants were measured by surface tension method.

Kurzfassung

Die quaternären Ammoniumtenside 3a–d mit einer Dietherverknüpfung im Gerüst zwischen der Kohlenstoffkette und den Ammoniumkopfgruppen wurde als potenzielle Soft-Template-Mittel für die Herstellung von mesoporösen Materialien synthetisiert. Es wurde angenommen, dass man über die Variation ihrer Kohlenstoffkettenlänge die Porengröße des damit hergestellten mesoporösen Materials kontrollieren kann. Die kritische Mizellenbildungkonzentration (CMC) und die Oberflächenspannung an der CMC (γCMC) dieser Tenside wurden mit einer Oberflächenspannungsmethode bestimmt.


* Correspondence address Mr. Dr Dongliang Liu, Key Laboratory of Science & Technology of Eco-Textile, Ministry of Education, Department of Applied Chemistry, Donghua University, 2999 North Renmin RD, Shanghai, 201620, P.R. China, E-Mail:

Xiaofen Xu was born in 1988. She obtained her Bachelor's Degree from Anhui University of Science & Technology in 2011. She is now taking a master's degree in the synthesis and physical chemistry of surfactants and catalyst preparation at Donghua University.

Dongliang Liu was born in 1974. He obtained a Bachelor's Degree from Dalian University of Technology in 1997 and a Ph.D. from the same university in 2006. Since 2006, He has been teaching and working at Donghua University. His main field of research are organic synthesis and industrial catalysis.

Daoping He was born in 1990. He obtained his Bachelor’ Degree from Anhui Polytechnic University in 2012. He is now taking a master's degree in the synthesis and physical chemistry of surfactants and catalyst preparation at Donghua University.


References

1. Xu, R. R., Pang, W. Q., Yu, J. H., Huo, Q. S. and Chen, J. S.: Chemistry-Zeolites and Porous Materials; Science Press, China, 2004, p58; ISBN: 7-03-012757-9.Search in Google Scholar

2. Zhao, D. Y., Wan, Y. and Zhou, W. Z.: Ordered Mesoporous Molecular Sieve Materials; Higher Education Press, China, 2013, p 244; ISBN: 978-7-04-036543-6.Search in Google Scholar

3. Fang, Y. M. and Hu, H. Q.: An Ordered Mesoporous Aluminosilicate with Completely Crystalline Zeolite Wall Structure; J. Am. Chem. Soc.128 (2006) 10636. DOI: 10.1021/ja0611821Search in Google Scholar

4. Tian, Y. and Li, Y. D.: Hierarchical porous zeolites synthesized with soft templates and their catalytic performance; Journal of Chemical Industry and Engineering (China)64 (2013) 393. DOI: 10.3969/j.issn.0438-1157.2013.02.002Search in Google Scholar

5. Kresge, C.T., Leonowicz, M.E., Roth, W. J., Vartuli, J. C. and Beck, J. S.: Ordered Mesoporous Molecular Sieves Synthesized by a Liquid-crystal Template Mechanism; Nature359 (1992) 710. DOI: 10.1038/359710a0Search in Google Scholar

6. Liu, D. L., Qiao, W. H., Li, Z. S., Zhang, S. B., Cheng, L. B. and Jin, K.: Synthetic Diether-linked Cationic Lipids for Gene Delivery; Chem. Biol. Drug Des.67 (2006) 248. DOI: 10.1111/j.1747-0285.2006.00366.xSearch in Google Scholar

7. Liu, D. L., Hu, J. J., Qiao, W. H., Li, Z. S., Zhang, S. B. and Cheng, L. B.: Synthesis of Carbamate-linked Lipids for Gene Delivery; Boorg. Medicinal Chem. Letter15 (2005) 3147. DOI: 10.1016/j.bmcl.2005.04.010Search in Google Scholar

8. Terasaka, T., Kinoshita, T., Kuno, M., Seki, N., Tanaka, K. and Nakanishi, I.: Structure-Based Design, Synthesis, and Structure Activity Relationship Studies of Novel Non-nucleoside Adenosine Deaminase Inhibitors; J. Med. Chem.47 (2004) 3730. DOI: 10.1021/jm0306374Search in Google Scholar

9. Ichimaru, N., Murai, M., Kakutani, N., Kako, J., Ishihara, A., Nakagawa, Y. and Nishioka, T.: Synthesis and Characterization of New Piperazine-Type Inhibitors for Mitochondrial NADH-Ubiquinone Oxidoreductase (Complex I); Biochemistry47 (2008) 10816. DOI: 10.1021/bi8010362Search in Google Scholar

10. Pinchuk, A. N., Rampy, M. A., Longino, M. A., Skinner, R. W. S., Gross, M. D., Weichert, J. P. and Counsell, R. E.: Synthesis and Structure-Activity Relationship Effects on the Tumor Avidity of Radioiodinated Phospholipid Ether Analogues; J. Med. Chem.49 (2006) 2155. DOI: 10.1021/jm050252gSearch in Google Scholar

11. Mori, K.: Synthesis of all the Six Components of the Female-produced Contact Sex Pheromone of the German Cockroach, Blattella Germanica (L). Tetrahedron64 (2008) 4060. DOI: 10.1016/j.tet.2008.02.040Search in Google Scholar

12. Watanabe, Y., Miura, K., Shiozaki, M., Kanai, S., Kurakata, S. and Nishijima, M.: Synthesis of GLA-60 Type Pyran Carboxylic Acids with an Alkyl Chain Instead of an Ester Chain as LPS-Antagonists; Carbohyd. Res.332 (2001) 257. DOI: 10.1016/S0008-6215(01)00055-6Search in Google Scholar

13. Albrecht, S., Defoin, A. and Tarnus, C.: Simple Preparation of O-substituted Hydroxylamines from Alcohols; Synthesis10 (2006) 1635. DOI: 10.1055/s-2006-926440Search in Google Scholar

14. Wang, S. R., Li, X. G. and Liu, D. Z.: Surfactant Chemistry; Chemical Industry Press, China, 2005, p24; ISBN: 978-7-122-07783-7.Search in Google Scholar

15. Guo, X. F. and Jia, L. H.: Cationic Surfactants and their applications; Chemical Industry Press, China, 2003, p78; ISBN: 7-5025-3823-2.Search in Google Scholar

16. Lu, Q. X., Fu, S. Z., Yin, B. L., Tao, W. M., Dou, J. L. and Wei, X. L.: Synthesis and Properties of Quaternary Ammonium Gemini Surfactants; China Surfactant Detergent & Cosmetics39 (2009) 81. DOI: 1001-1803(2009)02-0081-04Search in Google Scholar

17. Choi, M., Cho, H.S., Srivastava, R., Venkatesan, C., Choi, D. H. and Ryoo, R.: Amphiphilic Organosilane-directed Synthesis of Crystalline Zeolite with Tunable Mesoporosity; Nat. Mater.5 (2006) 718. DOI: 10.1038/nmat1705Search in Google Scholar PubMed

18. Huo, Q. S., Margolese, D. I. and Stucky, G. D.: Surfactant Control of Phases in the Synthesis of Mesoporous Silica-Based Materials; Chem. Mater.8 (1996) 1147. DOI: 10.1021/cm960137 hSearch in Google Scholar

Received: 2013-09-02
Revised: 2014-01-30
Published Online: 2014-07-22
Published in Print: 2014-07-15

© 2014, Carl Hanser Publisher, Munich

Downloaded on 7.12.2025 from https://www.degruyterbrill.com/document/doi/10.3139/113.110309/pdf
Scroll to top button