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Boron Rich Solids - Sensors, Ultra High Temperature Ceramics, Thermoelectrics, Armor (Hardcover, Edition.): Nina Orlovskaya,... Boron Rich Solids - Sensors, Ultra High Temperature Ceramics, Thermoelectrics, Armor (Hardcover, Edition.)
Nina Orlovskaya, Mykola Lugovy
R5,974 Discovery Miles 59 740 Ships in 10 - 15 working days

The objective of this book is to discuss the current status of research and development of boron-rich solids as sensors, ultra-high temperature ceramics, thermoelectrics, and armor. Novel biological and chemical sensors made of stiff and light-weight boron-rich solids are very exciting and efficient for applications in medical diagnoses, environmental surveillance and the detection of pathogen and biological/chemical terrorism agents. Ultra-high temperature ceramic composites exhibit excellent oxidation and corrosion resistance for hypersonic vehicle applications. Boron-rich solids are also promising candidates for high-temperature thermoelectric conversion. Armor is another very important application of boron-rich solids, since most of them exhibit very high hardness, which makes them perfect candidates with high resistance to ballistic impact. The following topical areas are presented: *Boron-rich solids: science and technology *Synthesis and sintering strategies of boron rich solids *Microcantilever sensors *Screening of the possible boron-based thermoelectric conversion materials; *Ultra-high temperature ZrB2 and HfB2 based composites *Magnetic, transport and high-pressure properties of boron-rich solids *Restrictions of the sensor dimensions for chemical detection *Armor

Boron Rich Solids - Sensors, Ultra High Temperature Ceramics, Thermoelectrics, Armor (Paperback, Edition.): Nina Orlovskaya,... Boron Rich Solids - Sensors, Ultra High Temperature Ceramics, Thermoelectrics, Armor (Paperback, Edition.)
Nina Orlovskaya, Mykola Lugovy
R5,893 Discovery Miles 58 930 Ships in 10 - 15 working days

The objective of this book is to discuss the current status of research and development of boron-rich solids as sensors, ultra-high temperature ceramics, thermoelectrics, and armor. Novel biological and chemical sensors made of stiff and light-weight boron-rich solids are very exciting and efficient for applications in medical diagnoses, environmental surveillance and the detection of pathogen and biological/chemical terrorism agents. Ultra-high temperature ceramic composites exhibit excellent oxidation and corrosion resistance for hypersonic vehicle applications. Boron-rich solids are also promising candidates for high-temperature thermoelectric conversion. Armor is another very important application of boron-rich solids, since most of them exhibit very high hardness, which makes them perfect candidates with high resistance to ballistic impact. The following topical areas are presented: *Boron-rich solids: science and technology *Synthesis and sintering strategies of boron rich solids *Microcantilever sensors *Screening of the possible boron-based thermoelectric conversion materials; *Ultra-high temperature ZrB2 and HfB2 based composites *Magnetic, transport and high-pressure properties of boron-rich solids *Restrictions of the sensor dimensions for chemical detection *Armor

Mixed Ionic Electronic Conducting Perovskites for Advanced Energy Systems (Paperback, 2004 ed.): Nina Orlovskaya, Nigel Browning Mixed Ionic Electronic Conducting Perovskites for Advanced Energy Systems (Paperback, 2004 ed.)
Nina Orlovskaya, Nigel Browning
R8,681 Discovery Miles 86 810 Ships in 10 - 15 working days

Advanced mixed ionic electronic conducting (MIEC) perovskites play an important role in many electrochemical systems for advanced energy technologies. They are major components in such devices as solid oxide fuel cells (SOFCs), oxygen separation membranes, chemical sensors and catalysts. In addition to energy technology, the development of these multifunctional materials is of crucial importance for transportation, aerospace engineering, and electronics. The use of these materials as chemical sensors is also important for anti-terrorism initiatives. The present book discusses progress and problems in the development of ionic, electronic, and MIEC materials as active materials in advanced energy systems; the development and design of solid-oxide fuel cells (SOFCs) for next-generation vehicles, chemical sensors and oxygen separation membranes; and identifies directions for future research, such as conducting mechanisms, stability and reliability of devices, degradation problems, crystal structure, classification of phase transitions exhibited by the materials.

Mixed Ionic Electronic Conducting Perovskites for Advanced Energy Systems (Hardcover, 2004 ed.): Nina Orlovskaya, Nigel Browning Mixed Ionic Electronic Conducting Perovskites for Advanced Energy Systems (Hardcover, 2004 ed.)
Nina Orlovskaya, Nigel Browning
R8,762 Discovery Miles 87 620 Ships in 10 - 15 working days

Advanced mixed ionic electronic conducting (MIEC) perovskites play an important role in many electrochemical systems for advanced energy technologies. They are major components in such devices as solid oxide fuel cells (SOFCs), oxygen separation membranes, chemical sensors and catalysts. In addition to energy technology, the development of these multifunctional materials is of crucial importance for transportation, aerospace engineering, and electronics. The use of these materials as chemical sensors is also important for anti-terrorism initiatives. The present book discusses progress and problems in the development of ionic, electronic, and MIEC materials as active materials in advanced energy systems; the development and design of solid-oxide fuel cells (SOFCs) for next-generation vehicles, chemical sensors and oxygen separation membranes; and identifies directions for future research, such as conducting mechanisms, stability and reliability of devices, degradation problems, crystal structure, classification of phase transitions exhibited by the materials.

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