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Development of radio-frequency heating-assisted nanoimprint with PETG solution for nanostructure-based biosensors

机译:纳米结构基生物传感器用PETG溶液的射频加热辅助纳米压印的研制

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We present radio-frequency (RF) heating-assisted nanoimprint lithography (NIL) for the rapid fabrication of nanostructured biochips. The chips were spin-coated using a RF-sensitive polymer film, namely polyethylene terephthalate glycol-modified (PETG). The RF heating process takes advantage of rapid temperature increases and cooling for NIL. Using a patterned nickel film as the mold, various nanostructures, such as nanowire, nanorod, and nanogrid arrays, were successfully fabricated within several seconds. For surface plasmon biosensing chips, the silver-coated nanowire arrays achieved a linewidth of 6.01 nm and wavelength sensitivity of 550 nm per refractive index unit. The functionality of the sensor was verified by observing the label-free antigen–antibody interactions.
机译:我们呈现射频(RF)加热辅助纳米压印光刻(NIL),用于快速制备纳米结构的生物芯片。使用RF敏感的聚合物膜旋涂碎片,即聚对苯二甲酸乙二醇酯改性(PETG)。 RF加热过程利用快速温度升高,冷却为NIL。使用图案化的镍膜作为模具,在几秒钟内成功地制造了各种纳米结构,例如纳米线,纳米峰和纳米射阵列。对于表面等离子体混合物,银涂覆的纳米线阵列达到6.01nm的线宽,每折射率为550nm的波长灵敏度。通过观察无标记的抗原 - 抗体相互作用来验证传感器的功能。

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