首页> 外文会议>European Passive Components Conference; 20031027-20031030; Stuttgart; DE >Tuning the Properties of Tantalum- and Niobium Oxides; A Key to Tailor-made Materials for Passive Components
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Tuning the Properties of Tantalum- and Niobium Oxides; A Key to Tailor-made Materials for Passive Components

机译:调节钽和铌的氧化物的性能;被动元件定制材料的关键

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Although tantalum and niobium oxides can be found in many industrial applications, electronic applications dominate their usage. For example lithium niobate- and tantalate single crystals as well as microwave ceramics like barium zink tantalate are most common in telecommunications. Therefore it is astonishing that the capacitor industry has exploited their properties only in terms of high K materials (PMN, ATN) or as additives in barium titanate formulations. However, recent innovations in the field of capacitor grade niobium- and tantalum metal powders, especially the magnesium gas reduction of oxides, have led to a new focus on the precursor development. Tantalum and niobium oxides with different morphologies and different physical properties have been developed opening a door to new products and markets. The possibility to adjust the morphology of tantalum and niobium oxides according to the requirements of a capacitor grade powder and retaining it during the magnesium gas reduction process could be demonstrated. This makes the design of tailor-made capacitor grade metal powders feasible.
机译:尽管钽和铌的氧化物可以在许多工业应用中找到,但电子应用在其使用中占主导地位。例如,铌酸锂和钽酸单晶以及微波陶瓷,如钽酸钡锌,在电信领域最为常见。因此,令人惊讶的是,电容器行业仅在高K材料(PMN,ATN)方面或在钛酸钡配方中作为添加剂利用了它们的性能。但是,电容器级铌和钽金属粉末领域的最新创新,尤其是镁氧化物的还原,已引起对前驱体开发的新关注。已经开发出具有不同形态和不同物理性能的钽和铌氧化物,为新产品和市场打开了大门。可以证明有可能根据电容器级粉末的要求调整钽氧化物和铌氧化物的形态,并在镁气还原过程中将其保留。这使得定制电容器级金属粉末的设计成为可能。

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