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Preparation of functional nanostructured particles by spray drying

机译:喷雾干燥制备功能纳米结构颗粒

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When particle dimensions are reduced to the order of several nanometers,their physical and chemical properties deviate significantly from the bulk properties of such materials.Because of this,there is abundant potential for their use in future technologies including electronic and optoelectronic,mechanical,chemical,cosmetic,medical,drug,and food technologies.However,due to their extremely small sizes,the particles suffer from many problems related to their surface and thermal stability,shape preservation,handling,assembly in devices,etc.It is therefore an important challenge to solve these problems by developing slightly larger particles (e.g.on the submicrometer scale) in which the properties generated by the nanoscale material are preserved.One approach to this is to trap nanoparticles in a micrometer-sized inert matrix.This approach allows the nanoscale properties to be retained,since nanoparticles are separated from each other in the inert matrix.The inert matrix also serves as a coating medium that inhibits any chemical changes to the surface of the nanoparticles.Their larger size allows easy handling or assembly in devices.A promising method for designing and fabricating these composite structures is a spray method,in which spherical particles can be produced.In this paper,we review the nanostructural processing (synthesis) of submicrometer-sized particles by a spray method,which provides a restricted reaction environment (such as pores or cages) in the matrix for their synthesis and handling.The characterization and potential applications of these composites are also discussed.
机译:当颗粒尺寸减小到几纳米量级时,它们的物理和化学性质与此类材料的整体性质显着不同。因此,它们在电子,光电子,机械,化学,化妆品,医药,药品和食品技术。然而,由于它们的尺寸非常小,因此它们的表面和热稳定性,形状保持,处理,在装置中组装等问题很多。因此,这是一个重要的挑战通过开发稍大的颗粒(例如,亚微米级)来保留纳米级材料产生的特性来解决这些问题。一种解决方法是将纳米粒子捕获在微米级的惰性基质中。由于惰性基质中的纳米颗粒彼此分离,因此可以保留。惰性基质还可以作为ac可以阻止纳米粒子表面发生任何化学变化的混合介质,其较大的尺寸可以轻松地在装置中进行处理或组装。设计和制造这些复合结构的有前途的方法是喷涂法,该方法可以生产球形颗粒。在本文中,我们回顾了通过喷雾法对亚微米级颗粒的纳米结构处理(合成),该方法为基质的合成和处理提供了受限的反应环境(例如孔或笼)。这些复合材料的表征和潜在应用也进行了讨论。

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