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Chemistry of nanocrystalline oxide m...
~
Patil, K. C.
Chemistry of nanocrystalline oxide materialscombustion synthesis, properties and applications /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Chemistry of nanocrystalline oxide materialsK. C. Patil ... [et al.].
其他題名:
combustion synthesis, properties and applications /
其他作者:
Patil, K. C.
出版者:
Singapore ;World Scientific Pub. Co.,c2008.
面頁冊數:
xvi, 345 p. :ill. (some col.)
標題:
Metallic oxides.
電子資源:
http://www.worldscientific.com/worldscibooks/10.1142/6754#t=toc
ISBN:
9789812793157 (electronic bk.)
Chemistry of nanocrystalline oxide materialscombustion synthesis, properties and applications /
Chemistry of nanocrystalline oxide materials
combustion synthesis, properties and applications /[electronic resource] :K. C. Patil ... [et al.]. - Singapore ;World Scientific Pub. Co.,c2008. - xvi, 345 p. :ill. (some col.)
Includes bibliographical references and index.
Nano-oxide materials lend themselves to applications in a wide variety of emerging technological fields such as microelectronics, catalysts, ceramics, coatings, and energy storage. However, developing new routes for making nano-based materials is a challenging area for solid-state materials chemists. This book does just that by describing a novel method for preparing them. The authors have developed a novel low-temperature, self-propagating synthetic route to nano-oxides by the solution combustion and combustible precursor processes. This method provides the desired composition, structure, and properties for many types of technologically useful nanocrystalline oxide materials like alumina, ceria, iron oxides, titania, yttria, and zirconia, among others.
Electronic reproduction.
Singapore :
World Scientific Publishing Co.,
2008.
System requirements: Adobe Acrobat Reader.
ISBN: 9789812793157 (electronic bk.)Subjects--Topical Terms:
229820
Metallic oxides.
LC Class. No.: TA418.9.N35
Dewey Class. No.: 620.11299
Chemistry of nanocrystalline oxide materialscombustion synthesis, properties and applications /
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Nano-oxide materials lend themselves to applications in a wide variety of emerging technological fields such as microelectronics, catalysts, ceramics, coatings, and energy storage. However, developing new routes for making nano-based materials is a challenging area for solid-state materials chemists. This book does just that by describing a novel method for preparing them. The authors have developed a novel low-temperature, self-propagating synthetic route to nano-oxides by the solution combustion and combustible precursor processes. This method provides the desired composition, structure, and properties for many types of technologically useful nanocrystalline oxide materials like alumina, ceria, iron oxides, titania, yttria, and zirconia, among others.
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http://www.worldscientific.com/worldscibooks/10.1142/6754#t=toc
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