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楼主  发表于: 2009-11-14 10:57

 Metal Oxide Chemistry and Synthesis: From Solution to Solid State

管理提醒: 本帖被 silverks 执行加亮操作(2010-09-17)

Metal Oxide Chemistry and Synthesis: From Solution to Solid State
by: Jean-Pierre Jolivet
en

0471970565  9780471970569  

Publisher:   Wiley
Number Of Pages:   338
Publication Date:   2000-09-27
Sales Rank:   1362611
IN / ASIN:   0471970565
EAN:   9780471970569
Binding:   Hardcover
Manufacturer:   Wiley
Studio:   Wiley
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Book Description:

The precipitation of metal oxides from aqueous solutions creates nanoparticles with interesting solid state properties, thus building a bridge between solution chemistry and solid state chemistry. This book is the first monograph to deal with the formation of metal oxides from aqueous solutions with emphasis on the formation and physical chemistry of nanoparticles.

Metal Oxide Chemistry and Synthesis: From Solution to Solid State
* Provides a comprehensive introduction to the synthesis of finely divided materials
* Presents the chemistry, physics and applications of these materials
* Builds a bridge between classical solution chemistry and new developments in solid state chemistry
* Introduces an important new area in inorganic chemistry
Part I examines the mechani of condensation of aqueous cations leading to polynuclear species or lattices, and rationalizes the behaviour of cations in precipitation phenomena by identifying pathways from soluble species to solids. The cation complex is also ysed in relation to the synthesis of some technologically interesting polymetallic oxides, e.g. ferroelectric, ferrimagnetic and supraconductor materials.

Part II is devoted to the surface chemistry of oxide particles. The basic concepts relating to the reactivity of the oxide-solution interface are introduced and applied to various adsorption phenomena, such as aggregation, stability of particle size against ripening, etc. These properties are exploited for the synthesis of nanomaterials for a broad range of applictions such as ceramic powders, catalysts and nanocomposites. This will also be of interest to those wishing to understand geochemical and some biological processes.

As well as being invaluable to researchers and postgraduate students of inorganic chemistry, this book will also be appreciated by solid-state chemists, materials scientists and colloid chemists with an interest in metal oxides.

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