Polymer–Ceramic Nanohybrid Materials
详细信息    查看全文
  • 作者:Sarabjeet Kaur (20)
    Markus Gallei (21)
    Emanuel Ionescu (20)
  • 关键词:Functional properties ; Multifunctional materials ; Nanohybrid materials ; Polymer–ceramic interface ; Polymer–ceramic nanohybrids ; Structural properties ; Synthesis methods
  • 刊名:Advances in Polymer Science
  • 出版年:2015
  • 出版时间:2015
  • 年:2015
  • 卷:267
  • 期:1
  • 页码:143-185
  • 全文大小:884 KB
  • 参考文献:1. Matic P (2003) Overview of multifunctional materials. In: Lagoudas DC (ed) Smart structures and materials 2003: active materials: behavior and mechanics. In: SPIE Proceedings 5053. SPIE, Bellingham, WA. doi:10.1117/12.498546
    2. Christodoulou L, Venables J (2003) Multifunctional material systems: the first generation. JOM 55(12):39-5
    3. Schottner G (2001) Hybrid sol–gel-derived polymers: applications of multifunctional materials. Chem Mater 13(10):3422-435
    4. Avnir D, Coradin T, Lev O, Livage J (2006) Recent bio-applications of sol–gel materials. J Mater Chem 16(11):1013
    5. Alexandra Fidalgo RC, Laura MI, Mario P (2005) Role of the alkyl-alkoxide precursor on the structure and catalytic properties of hybrid sol–gel catalysts. Chem Mater 17:6686-694
    6. Minghuo W, Ren’an W, Fangjun W, Lianbing R, Jing D, Zhen L, Hanfa Z (2009) “One-Pot-process for fabrication of organic-silica hybrid monolithic capillary columns using organic monomer and alkoxysilane. Anal Chem 81:3529-536
    7. Wu M, Wu R, Zhang Z, Zou H (2011) Preparation and application of organic-silica hybrid monolithic capillary columns. Electrophoresis 32(1):105-15
    8. Weng X, Bao Z, Xing H, Zhang Z, Yang Q, Su B, Yang Y, Ren Q (2013) Synthesis and characterization of cellulose 3,5-dimethylphenylcarbamate silica hybrid spheres for enantioseparation of chiral beta-blockers. J Chromatogr A 1321:38-7
    9. Ashby MF, Bréchet YJM (2003) Designing hybrid materials. Acta Mater 51(19):5801-821
    10. Sanchez C, Julián B, Belleville P, Popall M (2005) Applications of hybrid organic–inorganic nanocomposites. J Mater Chem 15(35-6):3559
    11. Mammeri F, Bourhis EL, Rozes L, Sanchez C (2005) Mechanical properties of hybrid organic–inorganic materials. J Mater Chem 15(35-6):3787
    12. Kickelbick G (2007) Introduction to hybrid materials. In: Kickelbick G (ed) Hybrid materials. Wiley-VCH, Weinheim, pp 1-8
    13. Tai CY, Hsiao B-Y, Chiu H-Y (2007) Preparation of silazane grafted yttria-stabilized zirconia nanocrystals via water/CTAB/hexanol reverse microemulsion. Mater Lett 61(3):834-36
    14. Tai CY, Lee MH, Wu YC (2001) Control of zirconia particle size by using two-emulsion precipitation technique. Chem Eng Sci 56(7):2389-398
    15. Rahman IA, Padavettan V (2012) Synthesis of silica nanoparticles by sol–gel: size-dependent properties, surface modification, and applications in silica-polymer nanocomposites—a review. J Nanomater 2012:1-5
    16. Chandradass J, Bae D-S (2008) Synthesis and characterization of alumina nanoparticles by Igepal CO-520 stabilized reverse micelle and sol–gel Processing. Mater Manuf Process 23(5):494-98
    17. Malik MA, Wani MY, Hashim MA (2012) Microemulsion method: a novel route to synthesize organic and inorganic nanomaterials. Arabian J Chem 5(4):397-17
    18. Dawson WJ (1988) Hydrothermal synthesis of advanced ceramic powders. Am Ceram Soc Bull 67(10):1673-678
    19. Dell'Agli G, Mascolo G (2000) Hydrothermal synthesis of ZrO2–Y2O3 solid solutions at low temperature. J Eur Ceram Soc 20(2):139-45
    20. Lee S, Shin H-J, Yoon S-M, Yi DK, Choi J-Y, Paik U (2008) Refractive index engineering of transparent ZrO2–polydimethylsiloxane nanocomposites. J Mater Chem 18(15):1751
    21. Mallakpour S, Barati A (2011) Efficient preparation of hybrid nanocomposite coatings based on poly(vinyl alcohol) and silane coupling agent modified TiO2 nanoparticles. Progr Org Coating 71(4):391-98
    22. Mo T-C, Wang H-W, Chen S-Y, Dong R-X, Kuo C-H, Yeh Y-C (2007) Synthesis and characterization of polyimide–silica nanocomposites using novel fluorine-modified silica nanoparticles. J Appl Polym Sci 104(2):882-90
    23. Takai C, Fuji M, Takahashi M (2007) A novel surface designed technique to disperse silica nano particle into polymer. Colloids Surf A Physicochem Eng Asp 292(1):79-2
    24. Tang JC, Lin GL, Yang HC, Jiang GJ, Chen-Yang YW (2007) Polyimide-silica nanocomposites exhibiting low thermal expansion coefficient and water absorption from surface-modified silica. J Appl Polym Sci 104(6):4096-105
    25. Tang JC, Yang HC, Chen SY, Chen-Yang YW (2007) Preparation and properties of polyimide/silica hybrid nanocomposites. Polymer Compos 28(5):575-81
    26. Kango S, Kalia S, Celli A, Njuguna J, Habibi Y, Kumar R (2013) Surface modification of inorganic nanoparticles for development of organic–inorganic nanocomposites—a review. Progr Polym Sci 38(8):1232-261
    27. Chen C (2011) The manufacture of polymer nanocomposite materials using supercritical carbon dioxide. Virginia Polytechnic Institute and State University, Blacksburg VA
    28. Rong MZ, Zhang MQ, Zheng YX, Zeng HM, Walter R, Friedrich K (2001) Structure–property relationships of irradiatio
  • 作者单位:Sarabjeet Kaur (20)
    Markus Gallei (21)
    Emanuel Ionescu (20)

    20. Institute for Materials Science, Technische Universit?t Darmstadt, Jovanka-Bontschits-Strasse 2, 64287, Darmstadt, Germany
    21. Ernst-Berl-Institute for Technical and Macromolecular Chemistry, Technische Universit?t Darmstadt, Alarich-Weiss-Strasse 4, 64287, Darmstadt, Germany
  • ISSN:1436-5030
文摘
This review is dedicated to nanohybrid materials consisting of a polymer-based matrix and a disperse nanoscaled ceramic phase. Different preparation techniques for the synthesis of polymer–ceramic nanohybrid materials will be presented, such as blending techniques, sol–gel processing, in-situ polymerization, and self-assembly methods. Selected structural and functional properties of polymer–ceramic nanohybrid materials will be highlighted and discussed within the context of their dependence on parameters such as the homogeneity of the dispersion of the ceramic throughout the polymer matrix, the particle size of the ceramic phase, and the polymer–ceramic interface. Moreover, some advanced applications of polymer–ceramic nanohybrid materials will be addressed and compared with their polymeric counterparts.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700