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Use of Reversal Nanoimprinting of Nanoparticles to Prepare Flexible Waveguide Sensors Exhibiting Enhanced Scattering of the Surface Plasmon Resonance

机译:使用纳米粒子的反向纳米压印来制备柔性波导传感器,以增强表面等离振子共振的散射

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摘要

A flexible surface plasmon resonance (SPR)-based scattering waveguide sensor is prepared by directly imprinting hollow gold nanoparticles (NPs) and solid gold NPs onto flexible polycarbonate (PC) plates-without any surface modification-using a modified reversal nanoimprint lithography technology. Controlling the imprinting conditions, including temperature and pressure, allows for the fine adjustment of the depths of the embedded metal NPs and their SPR properties. This patterning approach exhibits a resolution down to the submicrometer level. A 3D finite-difference time domain simulation is used to examine the optical behavior of light propagating parallel to the air/substrate interface within the near-field regime. Consistent with the simulations, almost an order of magnitude enhancement in the scattering signal after transferring the metal NPs from the glass mold to the PC substrate is obtained experimentally. The enhanced signal is attributed to the particles' strong scattering of the guiding-mode waves (within the waveguide) and the evanescent wave (above the waveguide) simultaneously. Finally, the imprinting conditions are optimized to obtain a strongly scattering bio/chemical waveguide sensor.
机译:通过将空心金纳米颗粒(NPs)和固态金NPs直接压印到柔性聚碳酸酯(PC)板上而无需进行任何表面修饰,使用改进的逆向纳米压印光刻技术,可以制备基于柔性表面等离子体共振(SPR)的散射波导传感器。控制压印条件,包括温度和压力,可以精确调整嵌入的金属NP的深度及其SPR属性。这种图案化方法的分辨率低至亚微米级别。 3D有限差分时域仿真用于检查在近场状态下平行于空气/基材界面传播的光的光学行为。与模拟一致,通过实验获得了将金属NP从玻璃模具转移到PC基板后,散射信号几乎提高了一个数量级。增强的信号归因于同时导波(在波导内)和van逝波(在波导上方)的粒子强散射。最后,优化压印条件以获得强散射的生物/化学波导传感器。

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  • 来源
    《Advanced Functional Materials》 |2010年第11期|P.1742-1749|共8页
  • 作者单位

    Department of Materials Science and Engineering National Taiwan University Taipei (Taiwan);

    rnDepartment of Materials Science and Engineering National Taiwan University Taipei (Taiwan);

    rnDepartment of Materials Science and Engineering National Taiwan University Taipei (Taiwan);

    rnDepartment of Materials Science and Engineering National Taiwan University Taipei (Taiwan);

    rnDepartment of Materials Science and Engineering National Taiwan University Taipei (Taiwan);

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