DTIC ADA238791: DURIP Synthesis And Study Of Preceramic Polymers/Ceramic Precursors, Metal Silicides, And Polymers With Unique Optical And Electronic Properties - Info and Reading Options
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"DTIC ADA238791: DURIP Synthesis And Study Of Preceramic Polymers/Ceramic Precursors, Metal Silicides, And Polymers With Unique Optical And Electronic Properties" and the language of the book is English.
“DTIC ADA238791: DURIP Synthesis And Study Of Preceramic Polymers/Ceramic Precursors, Metal Silicides, And Polymers With Unique Optical And Electronic Properties” Metadata:
- Title: ➤ DTIC ADA238791: DURIP Synthesis And Study Of Preceramic Polymers/Ceramic Precursors, Metal Silicides, And Polymers With Unique Optical And Electronic Properties
- Author: ➤ Defense Technical Information Center
- Language: English
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- Internet Archive ID: DTIC_ADA238791
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"DTIC ADA238791: DURIP Synthesis And Study Of Preceramic Polymers/Ceramic Precursors, Metal Silicides, And Polymers With Unique Optical And Electronic Properties" Description:
The Internet Archive:
The thermal analysis system and tube furnace have been used to conduct initial studies on the conversion of alkoxysiloxy derivatives to metal silicate solid state materials. These results, pertaining titanium, zirconium, and hafnium, are described. Interest in low-temperature chemical routes to ceramic materials is based largely on the potential for generating metastable structures with unusual properties, or on development of improved processing methods. The sol-gel method in particular has attracted attention as a low temperature route to oxides. This method can be extended to the synthesis of mixed metal oxides, however the formation of homogeneous materials can be complicated by differences in hydrolysis rates for the starting metal compounds. Sol-gel processes have been utilized to produce titanium oxides or zirconium oxides containing silicates in the form of thin films, fibers, or monoliths. Materials of this type find applications that take advantage of their optical properties, chemical inertness, high melting points, insulating properties, and fracture toughness.
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