Self-assembly in the synthesis of ceramic materials and composites

被引:100
作者
Liu, J
Kim, A
Wang, LQ
Palmer, BJ
Chen, YL
Bruinsma, P
Bunker, BC
Exarhos, GJ
Graff, GL
Rieke, PC
Fryxell, GE
Virden, JW
Tarasevich, BJ
Chick, LA
机构
[1] Pac. Northwest National Laboratory, Richland
关键词
self-assembly; nanocomposites; mesoporous; surfactant; biomimetic;
D O I
10.1016/S0001-8686(96)00309-0
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
The self-assembly process provides an effective and environmentally benign method for synthesizing novel ceramic and composite materials. Three different approaches are discussed in this article: (1) self-assembly of colloidal crystals, (2) self-assembled monolayers, and (3) three-dimensional self-assembly with amphiphilic molecules. The self-assembly of colloidal crystals allows the synthesis of periodic optical devices and quantum dots from simple monodispersed particles. Self-assembled monolayers provide a molecular template to control the nucleation and growth of ceramic thin films. The emphasis of this paper will be on the self-assembly process with amphiphilic molecules, which represents the latest breakthrough in the design and synthesis of tailored nanoscale materials and composites. In the past few years, self-assembled materials have become a very active research area. This article illustrates how the basic principles of self-assembly can be applied in the synthesis of ceramic materials and discusses the role of various inter-molecular and into-particular forces.
引用
收藏
页码:131 / 180
页数:50
相关论文
共 121 条
[1]  
Aksay I. A., 1984, ADV CERAM, V9, P94
[2]   Biomimetic pathways for assembling inorganic thin films [J].
Aksay, IA ;
Trau, M ;
Manne, S ;
Honma, I ;
Yao, N ;
Zhou, L ;
Fenter, P ;
Eisenberger, PM ;
Gruner, SM .
SCIENCE, 1996, 273 (5277) :892-898
[3]  
ANDREA V, 1996, SCIENCE, V73, P613
[4]   RESEARCH OPPORTUNITIES ON CLUSTERS AND CLUSTER-ASSEMBLED MATERIALS - A DEPARTMENT OF ENERGY, COUNCIL ON MATERIALS SCIENCE PANEL REPORT [J].
ANDRES, RP ;
AVERBACK, RS ;
BROWN, WL ;
BRUS, LE ;
GODDARD, WA ;
KALDOR, A ;
LOUIE, SG ;
MOSCOVITS, M ;
PEERCY, PS ;
RILEY, SJ ;
SIEGEL, RW ;
SPAEPEN, F ;
WANG, Y .
JOURNAL OF MATERIALS RESEARCH, 1989, 4 (03) :704-736
[5]   SYNTHESIS OF HEXAGONALLY PACKED MESOPOROUS TIO2 BY A MODIFIED SOL-GEL METHOD [J].
ANTONELLI, DM ;
YING, JY .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 1995, 34 (18) :2014-2017
[6]   Synthesis and characterization of hexagonally packed mesoporous tantalum oxide molecular sieves [J].
Antonelli, DM ;
Ying, JY .
CHEMISTRY OF MATERIALS, 1996, 8 (04) :874-881
[7]   SELF-ASSEMBLY MOTIF FOR CREATING SUBMICRON PERIODIC MATERIALS - POLYMERIZED CRYSTALLINE COLLOIDAL ARRAYS [J].
ASHER, SA ;
HOLTZ, J ;
LIU, L ;
WU, ZJ .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1994, 116 (11) :4997-4998
[8]  
ASHLEY S, 1995, MECH ENG NOV, P76
[9]   LIQUID-CRYSTALLINE PHASES AS TEMPLATES FOR THE SYNTHESIS OF MESOPOROUS SILICA [J].
ATTARD, GS ;
GLYDE, JC ;
GOLTNER, CG .
NATURE, 1995, 378 (6555) :366-368
[10]  
Baes C.F., 1976, HYDROLYSIS CATIONS