Nitride Ceramics
Combustion Synthesis, Properties, and Applications
(Sprache: Englisch)
A comprehensive and valuable overview of recent developments in the field with special emphasis on the combustion synthesis of group I-VI nitrides and oxynitrides. Chapters cover different synthetic methods and process parameters, important materials properties and applications.
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A comprehensive and valuable overview of recent developments in the field with special emphasis on the combustion synthesis of group I-VI nitrides and oxynitrides. Chapters cover different synthetic methods and process parameters, important materials properties and applications.
Klappentext zu „Nitride Ceramics “
A comprehensive overview of recent developments in the field of non-oxide ceramics with special emphasis placed on the combustion synthesis of group I-VI nitrides and oxynitrides. To ensure the widest possible perspective, the authors are experts in academia, industry, or government research, and each chapter discusses different synthetic methods and process parameters, as well as important material properties and applications. The result is invaluable reading for researchers and practitioners in the industry as well as those looking for an introduction to the field. It is equally of great interest to chemists and materials scientists as well as engineers working in the area of inorganic and solid-state chemistry, structural and functional materials, catalysis, metallurgy, and electrochemistry.
Inhaltsverzeichnis zu „Nitride Ceramics “
ForewordPrefaceCOMBUSTION SYNTHESIS OF NITRIDES FOR DEVELOPMENT OF CERAMIC MATERIALS OF NEW GENERATIONIntroductionPeculiarities of Phase and Structure Formation of Metal and Nonmetal Nitrides in Combustion ModeDependence of SHS Nitride Composition and Structure on Infiltration Combustion ModeSHS Equipment for Powder SynthesisSynthesis of SHS-Ceramics Based on Silicon and Aluminum Nitrides and SiAlON PowdersDirect Production of Materials and Items Based on Nitride Ceramics by SHS GasostatingConclusionCOMBUSTION SYNTHESIS OF BORON NITRIDE CERAMICS: FUNDAMENTALS AND APPLICATIONSIntroductionCombustion in Boron-Nitrogen SystemMechanism of Structure Formation in CS WaveCombustion Synthesis of Nitride-Based CeramicsFinal RemarksCOMBUSTION SYNTHESIS OF ALUMINUM NITRIDE (AIN) POWDERS WITH CONTROLLED GRAIN MORPHOLOGIESIntroductionCombustion Synthesis of Quasi-Aligned AlN NanowhiskersEnhanced Thermal Conductivity of Polymer Composites Filled with 3D Brush-Like AlN Nanowhiskers by Combustion MethodGrowth of Flower-Like AlN by Combustion Synthesis Assisted with Mechanical Activation Combustion Synthesis of AlN Porous-Shell Hollow SpheresSummary and ConclusionsCOMBUSTION SYNTHESIS AND SPARK PLASMA SINTERING OF ß-SiAlONIntroductionCS of High-Purity ß-SiAlON and Densification by SPSPhysical Properties of CS-SPSed ß-SiAlONCorrosion ResistanceConclusions of This ChapterCOMBUSTION SYNTHESIS OF AlN (Al3O3N), BN, ZrN, AND TiN IN AIR AND CERAMIC APPLICATIONThermochemical Features of Aluminum Particles Combustion (Theoretical Background)Chemical Features of Metals Combustion in Air (Experimental Background)Nitrides (Oxynitrides) Formation by Metal Powder Combustion in AirApplcation of the Synthesized Nitrides and Oxynitrides in Dense CeramicsCOMBUSTION SYNTHESIS OF NITRIDES OF VANADIUM, NIOBIUM, AND TANTALUMIntroductionExperimental Methods of ApproachResults and DiscussionConclusionsSYNTHESIS OF NITRIDES BY SHS OF FERROALLOYS IN NITROGENIntroductionSynthesis of Silicon Nitride by
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Combustion of Ferrosilicon in NitrogenSynthesis of Vanadium Nitride by Combustion of Ferrovanadium in NitrogenSynthesis of Niobium Nitride by Combustion of Ferrovniobium in NitrogenSynthesis of Titanium Nitride by Combustion of Ferrovtitanium in NitrogenCombustion of Ferrochromium in Nitrogen and Synthesis of Chromium NitrideCombustion of Ferroboron in Nitrogen and Synthesis of Boron NitrideApplication Prospects of Products of Combustion of Ferroalloys in NitrogenConclusionsHALIDES IN SHS AZIDE TECHNOLOGY OF NITRIDES OBTAININGIntroductionThe Use of Ammonia HalidesThe Use of Halides of Elements to be NitridedThe Use of Complexing Halides of Elements to be Nitrided and Alkaline MetalsThe Use of Complexing Halides of Ammonia and Elements to be NitridedThe Use of Halides for Obtaining Refractory CompositionsEfficiency of Use of Halides in Azide SHS SystemsChemical Stages of Formation of Nitrides in a Mode SHS-AzProperty of SHS-Az PowdersProperty of SHS-Az CeramicsThe Synthesis of Nanostructural SHS-Az PowdersConclusionAlN CERAMICS FROM NANOSIZED PLASMA PROCESSED POWDER, ITS PROPERTIES AND APPLICATIONIntroduction: AlN Ceramics, its Characteristics and ApplicationProduction of AlN Ceramics from Nanosized Plasma Processed PowderProperties of AlN Ceramics from Nanosized Plasma Processed PowderPractical Application of Luminescence Properties of AlN CeramicsConclusionsAN OVERVIEW OF THE APPLICATION OF NITRIDES AND OXYNITRIDES IN PHOTOCATALYSIS AND ELECTROCATALYSISIntroductionPreparationPhotocatalysisElectrocatalysisConclusionCONCLUSIONIndex
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Autoren-Porträt
Alexander A. Gromov is a Humboldt Experienced Researcher and a Visiting Professor at the Georg Simon Ohm Technical University in Nürnberg, Germany, since 2013. Having obtained his academic degrees from Tomsk Polytechnic University (TPU, Russia), he spent most of his career working for TPU, KIT (Karlsruhe, Germany), Fraunhofer ICT (Pfinztal, Germany), University of Ulsan (South Korea) and the Aerospace Engineering Department at Milan Polytechnic University (Polimi, Italy). He has authored over 150 scientific publications and several books and has received numerous Russian scientific awards, including the Russian Academy of Science Medal in 2009. Liudmila Chukhlomina is a leading researcher at the Department of Structural Macrokinetics, Tomsk Scientific Center, Russia, since 1989. She graduated from Tomsk State University (Russia) in 1978 and then worked in the Scientific Research Institute of Applied Mathematics and Mechanics by Tomsk State University. Dr. Chukhlomina has authoredAlexander A. Gromov is a Humboldt Experienced Researcher and a Visiting Professor at the Georg Simon Ohm Technical University in Nürnberg, Germany, since 2013. Having obtained his academic degrees from Tomsk Polytechnic University (TPU, Russia), he spent most of his career working for TPU, KIT (Karlsruhe, Germany), Fraunhofer ICT (Pfinztal, Germany), University of Ulsan (South Korea) and the Aerospace Engineering Department at Milan Polytechnic University (Polimi, Italy). He has authored over 150 scientific publications and several books and has received numerous Russian scientific awards, including the Russian Academy of Science Medal in 2009.Liudmila Chukhlomina is a leading researcher at the Department of Structural Macrokinetics, Tomsk Scientific Center, Russia, since 1989. She graduated from Tomsk State University (Russia) in 1978 and then worked in the Scientific Research Institute of Applied Mathematics and Mechanics by Tomsk State University. Dr. Chukhlomina has authored over 130
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scientific publications and several books and is also a reviewer for the Russian Foundation for Basic Research.
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Bibliographische Angaben
- 2014, 360 Seiten, 15 farbige Abbildungen, 100 Schwarz-Weiß-Abbildungen, Maße: 17,7 x 24,9 cm, Gebunden, Englisch
- Herausgegeben:Gromov, Alexander A.; Chukhlomina, Liudmila N.;Mitarbeit:Ritzhaupt-Kleissl, Hans-Joachim
- Herausgegeben: Alexander A. Gromov, Liudmila N. Chukhlomina
- Verlag: Wiley-VCH
- ISBN-10: 3527337555
- ISBN-13: 9783527337552
- Erscheinungsdatum: 17.09.2014
Sprache:
Englisch
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