Organic reaction pathways in the nonaqueous synthesis of metal oxide nanoparticles

被引:415
作者
Niederberger, Markus [1 ]
Garnweitner, Georg [1 ]
机构
[1] Max Planck Inst Colloids & Interfaces Colloid Che, D-14424 Potsdam, Germany
关键词
metal oxides; nanostructures; nonhydrolytic synthesis; reaction mechanisms; sol-gel processes;
D O I
10.1002/chem.200600313
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nonaqueous-solution routes to metal oxide nanoparticles are a valuable alternative to the known aqueous sol-gel processes, offering advantages such as high crystallinity at low temperatures, robust synthesis parameters and ability to control the crystal growth without the use of surfactants. In the first part of the review we give a detailed overview of the various solution routes to metal oxides in organic solvents, with a strong focus on surfactant-free processes. In most of these synthesis approaches, the organic solvent plays the role of the reactant that provides the oxygen for the metal oxide, controls the crystal growth, influences particle shape, and, in some cases, also determines the assembly behavior. We have a closer look at the following reaction systems in this order: 1) metal halides in alcohols, 2) metal alkoxides, acetates, and acetylacetonates in alcohols, 3) metal alkoxides in ketones, and 4) metal acetylacetonates in benzylamine. All these systems offer some peculiarities with respect to each other, providing many possibilities to control and tailor the particle size and shape, as well as the surface and assembly properties. In the second part we present general mechanistic principles for aqueous and nonaqueous sol-gel processes, followed by the discussion of reaction pathways relevant for nanoparticle formation in organic solvents. Depending on the system several mechanisms have been postulated: 1) alkyl halide elimination, 2) elimination of organic ethers, 3) ester elimination, 4) C-C bond formation between benzylic alcohols and alkoxides, 5) ketimine and aldol-like condensation reactions, 6) oxidation of metal nanoparticles, and 7) thermal decomposition methods.
引用
收藏
页码:7282 / 7302
页数:21
相关论文
共 250 条
[91]   Growth versus cyclization in the early stages of the polycondensation of metal alkoxides [J].
In, M ;
Sanchez, C .
JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109 (50) :23870-23878
[92]   THERMAL TRANSFORMATION OF CHI-ALUMINA FORMED BY THERMAL-DECOMPOSITION OF ALUMINUM ALKOXIDE IN ORGANIC MEDIA [J].
INOUE, M ;
KOMINAMI, H ;
INUI, T .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1992, 75 (09) :2597-2598
[93]   FORMATION OF MICROCRYSTALLINE ALPHA-ALUMINA BY GLYCOTHERMAL TREATMENT OF GIBBSITE [J].
INOUE, M ;
TANINO, H ;
KONDO, Y ;
INUI, T .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1989, 72 (02) :352-353
[94]   SYNTHESIS OF MICROCRYSTALLINE TITANIA IN ORGANIC MEDIA [J].
INOUE, M ;
KOMINAMI, H ;
OTSU, H ;
INUI, T .
NIPPON KAGAKU KAISHI, 1991, (10) :1364-1366
[95]   NOVEL SYNTHETIC METHOD FOR THE CATALYTIC USE OF THERMALLY STABLE ZIRCONIA - THERMAL-DECOMPOSITION OF ZIRCONIUM ALKOXIDES IN ORGANIC MEDIA [J].
INOUE, M ;
KOMINAMI, H ;
INUI, T .
APPLIED CATALYSIS A-GENERAL, 1993, 97 (02) :L25-L30
[96]   Glycothermal synthesis of metal oxides [J].
Inoue, M .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2004, 16 (14) :S1291-S1303
[97]   SYNTHESIS OF YTTRIUM-ALUMINUM-GARNET BY THE GLYCOTHERMAL METHOD [J].
INOUE, M ;
OTSU, H ;
KOMINAMI, H ;
INUI, T .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1991, 74 (06) :1452-1454
[98]   ALCOHOTHERMAL TREATMENTS OF GIBBSITE - MECHANISMS FOR THE FORMATION OF BOEHMITE [J].
INOUE, M ;
KITAMURA, K ;
TANINO, H ;
NAKAYAMA, H ;
INUI, T .
CLAYS AND CLAY MINERALS, 1989, 37 (01) :71-80
[99]   XRD, Raman and FT-IR spectroscopic observations of nanosized TiO2 synthesized by the sol-gel method based on an esterification reaction [J].
Ivanda, M ;
Music, S ;
Popovic, S ;
Gotic, M .
JOURNAL OF MOLECULAR STRUCTURE, 1999, 481 :645-649
[100]   Size- and shape-controlled magnetic (Cr, Mn, Fe, Co, Ni) oxide nanocrystals via a simple and general approach [J].
Jana, NR ;
Chen, YF ;
Peng, XG .
CHEMISTRY OF MATERIALS, 2004, 16 (20) :3931-3935