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Functional Nanoparticles in Thin Films as Sensing Media

机译:薄膜中的功能纳米颗粒作为传感介质

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The combination of unique properties offered by materials on the nanoscale with the increased role of surface chemistry in nanostructured solids makes core-shell nanoparticles extremely attractive for application to "smart" thin-film coatings. Sensing properties of nanoparticle-based thin films were studied in several systems containing organic-coated semiconductor and metallic particles. In semiconductors, the interaction of organic shell and/or thin-film "matrix" with the environment results in changes in the nanoparticle's surface states, altering the optical properties of the thin film. Measuring the electrical properties of thin films composed of metallic cores with hydrocarbon shells offers another mechanism to monitor the local environment through the swelling of the hydrocarbons in the presence of external compounds. These mechanisms and their potential application to novel sensors will be discussed.
机译:纳米级材料所提供的独特性能与纳米结构固体中表面化学作用的增强相结合,使得核壳型纳米颗粒对于“智能”薄膜涂料的应用极为有吸引力。在包含有机涂层半导体和金属粒子的几种系统中研究了纳米粒子基薄膜的传感特性。在半导体中,有机壳和/或薄膜“基质”与环境的相互作用导致纳米粒子的表面状态发生变化,从而改变了薄膜的光学性能。测量由具有碳氢化合物壳的金属核组成的薄膜的电性能提供了另一种机制,可以通过在外部化合物存在下碳氢化合物的溶胀来监测局部环境。将讨论这些机制及其在新型传感器中的潜在应用。

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