Carbothermal Synthesis of Aluminum Nitride
A synthetic route is described for making carbothermally reduced powders from colloidal oxide precursors trapped in a polymer matrix. The entrapping resin, which is formed by polymerization of a monomer dissolved in the colloid, serves both to minimize particle agglomeration during reaction and as t...
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Veröffentlicht in: | Advanced Ceramic Materials 1988-07, Vol.3 (4), p.418-419 |
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container_title | Advanced Ceramic Materials |
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creator | SILVERMAN, LANCE D. |
description | A synthetic route is described for making carbothermally reduced powders from colloidal oxide precursors trapped in a polymer matrix. The entrapping resin, which is formed by polymerization of a monomer dissolved in the colloid, serves both to minimize particle agglomeration during reaction and as the source of carbon for reduction. Following reduction, the remaining carbon matrix is removed by oxidation. This strategy was used to synthesize aluminum nitride powder via trapping of colloidal alumina in poly(furfuryl alcohol) resin. |
doi_str_mv | 10.1111/j.1551-2916.1988.tb00248.x |
format | Article |
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The entrapping resin, which is formed by polymerization of a monomer dissolved in the colloid, serves both to minimize particle agglomeration during reaction and as the source of carbon for reduction. Following reduction, the remaining carbon matrix is removed by oxidation. 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The entrapping resin, which is formed by polymerization of a monomer dissolved in the colloid, serves both to minimize particle agglomeration during reaction and as the source of carbon for reduction. Following reduction, the remaining carbon matrix is removed by oxidation. 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The entrapping resin, which is formed by polymerization of a monomer dissolved in the colloid, serves both to minimize particle agglomeration during reaction and as the source of carbon for reduction. Following reduction, the remaining carbon matrix is removed by oxidation. This strategy was used to synthesize aluminum nitride powder via trapping of colloidal alumina in poly(furfuryl alcohol) resin.</abstract><cop>Oxford, UK</cop><pub>Blackwell Publishing Ltd</pub><doi>10.1111/j.1551-2916.1988.tb00248.x</doi><tpages>2</tpages></addata></record> |
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ispartof | Advanced Ceramic Materials, 1988-07, Vol.3 (4), p.418-419 |
issn | 0883-5551 1551-2916 |
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source | Wiley Online Library All Journals |
subjects | 360201 - Ceramics, Cermets, & Refractories- Preparation & Fabrication 360202 - Ceramics, Cermets, & Refractories- Structure & Phase Studies 400101 - Activation, Nuclear Reaction, Radiometric & Radiochemical Procedures ACTIVATION ANALYSIS ALUMINIUM COMPOUNDS ALUMINIUM NITRIDES CHEMICAL ANALYSIS COHERENT SCATTERING DATA DIFFRACTION ELECTRON MICROSCOPY EXPERIMENTAL DATA INFORMATION INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY MATERIALS SCIENCE MEASURING METHODS MICROSCOPY NEUTRON ACTIVATION ANALYSIS NITRIDES NITROGEN COMPOUNDS NUMERICAL DATA PNICTIDES POWDERS SCATTERING SYNTHESIS TRANSMISSION ELECTRON MICROSCOPY X-RAY DIFFRACTION |
title | Carbothermal Synthesis of Aluminum Nitride |
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