Mechanical properties of hybrid organic-inorganic materials

被引:427
作者
Mammeri, F
Le Bourhis, E
Rozes, L
Sanchez, C
机构
[1] Univ Paris 06, Lab Chim Matiere Condensee, CNRS, UMR 7574, F-75252 Paris, France
[2] Univ Poitiers, Met Phys Lab, CNRS, UMR 6630, F-86962 Futuroscope, France
关键词
D O I
10.1039/b507309j
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Homogeneously dispersed organic-inorganic hybrid nanocomposites can be obtained by increasing the interfacial interactions between both components via the formation of hydrogen bonds or covalent bonds, by mixing various polymers or via the adequate choice of the inorganic precursors. The mechanical response of these advanced functional materials is an issue of paramount importance when industrial applications are targeted. Large progress in the understanding of the mechanical properties of O-I hybrids has been gained by testing these materials under different conditions (static and dynamic, low and large deformations up to fracture) and using specific techniques developed for the mechanical characterization of conventional materials such as polymers, glasses or ceramics. However, the mechanical properties of hybrid O-I materials are dependent on their micro- and nanostructures and on the nature and extent of the O-I interfaces. Consequently, predictable mechanical properties for hybrids still represent a major challenge for hybrid materials science. Industrial attraction for hybrid materials has been emphasized by the development of new functional coatings. An important issue is the interface between the film and the substrate since strong adhesion can be tailored and ensures that delamination of the film will be limited.
引用
收藏
页码:3787 / 3811
页数:25
相关论文
共 262 条
[21]   A new route for organic-inorganic hybrid material synthesis through reactive processing without solvent [J].
Bounor-Legaré, V ;
Angelloz, C ;
Blanc, P ;
Cassagnau, P ;
Michel, A .
POLYMER, 2004, 45 (05) :1485-1493
[22]   Organic-inorganic nanostructured colloids [J].
Bourgeat-Lami, E .
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2002, 2 (01) :1-24
[23]   POLY(ETHYL ACRYLATE) LATEXES ENCAPSULATING NANOPARTICLES OF SILICA .1. FUNCTIONALIZATION AND DISPERSION OF SILICA [J].
BOURGEAT-LAMI, E ;
ESPIARD, P ;
GUYOT, A .
POLYMER, 1995, 36 (23) :4385-4389
[24]   Preparation, structure, growth mechanisms and properties of siloxane composites containing silica, titania or mixed silica-titania phases [J].
Breiner, JM ;
Mark, JE .
POLYMER, 1998, 39 (22) :5483-5493
[25]   STRUCTURE PROPERTY BEHAVIOR OF SOL-GEL DERIVED HYBRID MATERIALS - EFFECT OF A POLYMERIC ACID CATALYST [J].
BRENNAN, AB ;
WILKES, GL .
POLYMER, 1991, 32 (04) :733-739
[26]   Structure/property behavior of organic-inorganic semi-IPNS [J].
Brennan, AB ;
Miller, TM .
BETTER CERAMICS THROUGH CHEMISTRY VII: ORGANIC/INORGANIC HYBRID MATERIALS, 1996, 435 :155-164
[27]  
Brinker C.J., 1990, SOL GEL SCI
[28]  
CHUJO Y, 1992, ADV POLYM SCI, V100, P11
[29]  
CHUNG YJ, 1990, MATER RES SOC SYMP P, V180, P981, DOI 10.1557/PROC-180-981
[30]   ROLE OF TRIALKOXYSILANE FUNCTIONALIZATION IN THE PREPARATION OF ORGANIC-INORGANIC COMPOSITES [J].
COLTRAIN, BK ;
LANDRY, CJT ;
OREILLY, JM ;
CHAMBERLAIN, AM ;
RAKES, GA ;
SEDITA, JS ;
KELTS, LW ;
LANDRY, MR ;
LONG, VK .
CHEMISTRY OF MATERIALS, 1993, 5 (10) :1445-1455