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Nanocolloidal Microarrays on Chemically Patterned Substrates

机译:化学图案化基材上的纳米芯片微阵列

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The self-assembly of nanosized colloidal particles on patterned substrates offers a convenient way of building nano-structures in an efficient way through a bottom-up approach. Combining such self-assembly methods with conventional top-down micro- and nanofabrication methods may lead to new devices with a structural hierarchy ranging from the nano/molecular to the macroscopic level. In this work, the self-assembly of functionalized nanosized silica particles on chemically structured substrates is studied. A newly developed chemical patterning method offering good control of the surface chemistry is used to selectively bind functionalized nanocolloids at distinct spots on the surface. Such nanocolloidal microarrays offer the potential to be used to increase the sensitivity of existing biosensing applications due to the well-defined surface chemistry (of particle and substrate) and the highly increased surface area at the microspots where the nanocolloidal particles self-assemble.
机译:图案化基板上的纳米胶体颗粒的自组装提供了一种通过自下而上的方法以有效的方式建立纳米结构的便利方式。将这种自组装方法与传统的自上而下的微型和纳米制备方法相结合,可以导致具有从纳米/分子到宏观水平的结构层次的新装置。在这项工作中,研究了在化学结构衬底上的官能化纳米二氧化硅颗粒的自组装。一种新开发的化学图案化方法,提供了良好的表面化学控制,用于在表面上的不同斑点中选择性地结合官能化的纳米胶质。这种纳米胶体微阵列提供了由于纳米圆形颗粒自组装的微孔的明确定义的表面化学(颗粒和基板)和高度增加的表面积而增加的潜在能够用于提高现有的生物传感器应用的灵敏度。

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