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NATO Advanced Research Workshop on Boron Rich Solids: Sensors for Biological and Chemical Detection, Ultra High Temperature Ceramics, Thermoelectrics, Armor

机译:北约富硼固体高级研究研讨会:生物和化学检测传感器,超高温陶瓷,热电,铠装

摘要

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
机译:本书的目的是讨论富硼固体作为传感器,超高温陶瓷,热电和铠装的研究和开发现状。由刚性和轻质的富含硼的固体制成的新型生物和化学传感器非常令人兴奋且高效,可用于医学诊断,环境监测以及病原体和生物/化学恐怖分子的检测。超高温陶瓷复合材料在高超声速车辆应用中表现出出色的抗氧化性和耐腐蚀性。富含硼的固体也是高温热电转化的有希望的候选者。装甲是富含硼的固体的另一个非常重要的应用,因为它们大多数显示出很高的硬度,这使其成为具有高抗弹道冲击能力的理想选择。介绍了以下主题领域:•富含硼的固体:科学和技术; •富硼固体的合成和烧结策略; •微悬臂梁传感器; •筛选可能的硼基热电转换材料; •超高温ZrB2和HfB2基复合材料•富硼固体的磁,输运和高压特性; •化学检测传感器尺寸的限制; •盔甲

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