Thermally-Driven Micro-Walled Nano-Composite Microfluidic Platform for Controlled Localized Surface Plasmonic Detection of Bovine Growth Hormones

J. Ozhikandathil, S. Badilescu, M. Packirisamy
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引用次数: 4

Abstract

A novel method of integration of a silver-polydimethylsiloxane (PDMS) nanocomposite in a microfluidic channel for the realization of a lab-on-a-chip is reported in this work. By using a silver nitrate aqueous precursor solution, silver nanostructures are formed on, and under the surface of PDMS, by in situ reduction. The silver aggregates formed by reduction have a wide absorbance plasmon band in the UV–Visible range. Separated silver nano-islands, having narrow absorbance bands are formed by using the post-reduction annealing process. The plasmonic property of the silver nanostructures is used for the detection of bovine growth hormone. Subsequently, the nanocomposite was integrated into a specially fabricated micro-wall in the channel which is the actual sensing area in the microfluidic environment. The experiments confirmed that the nanocomposite can be integrated into the microfluidic device in order to enhance the detection sensitivity.
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牛生长激素受控局部表面等离子体检测的热驱动微壁纳米复合微流控平台
本文报道了一种在微流控通道中集成银-聚二甲基硅氧烷(PDMS)纳米复合材料以实现芯片实验室的新方法。利用硝酸银前驱体溶液,通过原位还原在PDMS表面和表面下形成银纳米结构。还原形成的银聚集体在紫外可见范围内具有较宽的吸光度等离子体带。采用还原后退火工艺制备了具有窄吸光度带的分离银纳米岛。银纳米结构的等离子体特性被用于牛生长激素的检测。随后,将纳米复合材料集成到通道中专门制造的微壁中,这是微流体环境中实际的传感区域。实验证实,将纳米复合材料集成到微流控器件中可以提高检测灵敏度。
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