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Patterned Nanoparticle Assembly as Novel Chemical and Biological Platforms

机译:图案化的纳米粒子组装作为新型化学和生物平台

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摘要

The ability to self-assemble nanoparticles into thin films and subsequently characterize the structural or morphological responses to interfacial chemical/biological reactivity is increasingly important. Surface patterning and tailoring using nanoparticle assemblies are expected to provide such abilities for selective immobilization and chemical and biological recognition. We describe herein recent results of an investigation of hydrogen-bonding based self-assembly of core-shell nanoparticles onto mono layer-patterned surfaces, and its potential utility for in-situ atomic force microscopic characterizations of interfacial chemical and biological reactivities. This system is potentially useful for immunoassays based on topographical height changes with well-defined internal morphological standard.
机译:自组装纳米颗粒成薄膜并随后表征对界面化学/生物反应性的结构或形态反应的能力变得越来越重要。期望使用纳米颗粒组件进行表面图案化和剪裁为选择性固定以及化学和生物识别提供这种能力。我们在本文中描述了基于氢键的核-壳纳米粒子在单层图案化表面上的自组装研究的最新结果,以及其对界面化学和生物学反应性进行原位原子力显微镜表征的潜在效用。该系统对于基于具有明确定义的内部形态学标准的地形高度变化的免疫测定法可能有用。

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