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Spray Pyrolysis Technique; High-K Dielectric Films and Luminescent Materials: A Review

机译:喷雾热解技术;高介电常数薄膜和发光材料的评论

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摘要

The spray pyrolysis technique has been extensively used to synthesize materials for a wide variety of applications such as micro and sub-micrometer dimension MOSFET´s for integrated circuits technology, light emitting devices for displays, and solid-state lighting, planar waveguides and other multilayer structure devices for photonics. This technique is an atmospheric pressure chemical synthesis of materials, in which a precursor solution of chemical compounds in the proper solvent is sprayed and converted into powders or films through a pyrolysis process. The most common ways to generate the aerosol for the spraying process are by pneumatic and ultrasonic systems. The synthesis parameters are usually optimized for the materials optical, structural, electric and mechanical characteristics required. There are several reviews of the research efforts in which spray pyrolysis and the processes involved have been described in detail. This review is intended to focus on research work developed with this technique in relation to high-K dielectric and luminescent materials in the form of coatings and powders as well as multiple layered structures.
机译:喷雾热解技术已广泛用于合成各种应用的材料,例如用于集成电路技术的微米和亚微米尺寸的MOSFET,用于显示器的发光器件以及固态照明,平面波导和其他多层材料光子学的结构设备。该技术是材料的常压化学合成,其中将化合物在适当溶剂中的前体溶液喷雾并通过热解过程转化为粉末或薄膜。在喷涂过程中产生气溶胶的最常见方法是通过气动和超声系统。合成参数通常针对所需的材料光学,结构,电气和机械特性进行优化。对于研究工作有一些评论,其中详细描述了喷雾热解及其涉及的过程。这篇综述旨在着重于用这种技术开展的与高K介电和发光材料有关的研究工作,这些材料以涂层和粉末以及多层结构的形式存在。

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