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Metal nanoparticle wires formed by an integrated nanomolding-chemical assembly process: Fabrication and properties

机译:通过集成纳米成型-化学组装工艺形成的金属纳米粒子线:制备和性能

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We report here the use of nanomolding in capillaries (NAMIC) coupled with dithiocarbamate (DTC) chemistry to fabricate sub-50 nm quasi-1D arrays of 3.5 nm core gold nanoparticles (Au NPs) over large areas. Owing to chemical immobilization via the DTC bond, the patterned NP systems are stable in water and organic solvents, thus allowing the surface modification of the patterned Au NP arrays through thiol chemistry and further orthogonal binding of proteins. The electrical properties of these patterned Au NP wires have also been studied. Our results show that NAMIC combined with surface chemistry is a simple but powerful tool to create metal NP arrays that can potentially be applied to fabricate nanoelectronic or biosensing devices.
机译:我们在这里报告在毛细血管中使用纳米成型(NAMIC)结合二硫代氨基甲酸酯(DTC)化学,以在大面积上制造3.5 nm核心金纳米颗粒(Au NP)的亚50 nm准1D阵列。由于通过DTC键的化学固定,构图的NP系统在水和有机溶剂中稳定,因此可以通过硫醇化学作用和蛋白的进一步正交结合对构图的Au NP阵列进行表面修饰。还研究了这些图案化的金纳米线的电学性能。我们的结果表明,结合表面化学的NAMIC是创建金属NP阵列的简单但功能强大的工具,可以潜在地将其用于制造纳米电子或生物传感设备。

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