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SUPERCRITICAL FLUIDS: NANOTECHNOLOGY AND SELECT EMERGING APPLICATIONS

机译:超临界流体:纳米技术和某些新兴应用

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In this paper, a selected list of emerging applications of supercritical fluids (SCFs) are presented. In particular, demonstrated facts for the promise of the nanoscale science and technology and its overlap or interface with the SCFs technology are presented. It is argued that nanoengineered materials at the nanoscale have mechanical, optical, chemical, and electrical properties quite different from the bulk material. Examples of enhanced performance of many such materials when they are used in practical applications are given. SCFs, in particular carbon dioxide, on account of their special properties such as zero surface tension, low viscosity, and high solubility, enable them to play a critical role in many advanced technology applications. For example, as miniaturization efforts approach the nanoscale, surface tension forces become an important factor in many nanotechnology processes such as lithography in the electronic industry. In particular, the zero-surface-tension property of the SCFs presents them as a natural choice for nanotechnology processes. Cases are presented where SCF technology could enhance the advancement of nanotechnology or when the two technologies could have synergistic contributions to the synthesis and design of new materials and possibilities are presented. For example, advances in nanoscience and supercritical fluids have contributed to a better design and understanding of the composition, size, and structure of catalysts, crystals, sol-gels, and composite material performance.
机译:本文介绍了一些超临界流体(SCF)的新兴应用。特别是,展示了纳米技术的前景及其与SCFs技术的重叠或接口的事实证明。有人认为,纳米级的纳米工程材料具有与块状材料完全不同的机械,光学,化学和电学性质。给出了许多在实际应用中使用时此类材料增强性能的示例。 SCF,尤其是二氧化碳,由于其特殊的特性(例如零表面张力,低粘度和高溶解度),使其在许多先进技术应用中发挥关键作用。例如,随着小型化努力接近纳米级,表面张力成为许多纳米技术过程中的重要因素,例如电子工业中的光刻。特别是,SCF的零表面张力特性使其成为纳米技术工艺的自然选择。介绍了一些案例,其中SCF技术可以促进纳米技术的发展,或者两种技术可以对新材料的合成和设计产生协同作用,并提供了可能性。例如,纳米科学和超临界流体的进步有​​助于更好地设计和理解催化剂,晶体,溶胶-凝胶和复合材料性能的组成,尺寸和结构。

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