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Static and dynamic tuning of surface plasmon resonance by controlling interparticle distance in arrays of Au nanoparticles

机译:通过控制Au纳米粒子阵列中的粒子间距离来静态和动态调整表面等离子体激元共振

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摘要

Static and dynamic tuning of plasmonic resonance in arrays of Au nanoparticles fabricated using self-assembly method on stretchable substrates was investigated. Static tuning was realized by altering the self-assembly conditions, which allowed varying average separation between Au nanoparticles and tune their collective plasmon mode with a broad wavelength range. Dynamic tuning was achieved by applying uniaxial or biaxial strain to the Au nanoparticle arrays on a stretchable substrate. Plasmonic tunability and anisotropy were demonstrated by strain-controlled stretchable substrate. Spectral shifts of collective plasmon modes with strain were found to depend on incident polarization and interparticle distance. The obtained plasmonic nanostructures can be applied as mechanically tunable plasmonic optical filters and sensors.
机译:研究了使用自组装方法在可拉伸基材上制备的金纳米颗粒阵列中的等离子体共振的静态和动态调谐。静态调谐是通过改变自组装条件实现的,该条件允许改变Au纳米颗粒之间的平均间隔,并在较宽的波长范围内调节其集体等离子体激元模式。通过将单轴或双轴应变应用于可拉伸基板上的Au纳米粒子阵列来实现动态调整。等离子体可调谐性和各向异性通过应变控制的可拉伸基材得到证明。发现具有应变的集体等离子体激元模的光谱位移取决于入射极化和粒子间距离。所获得的等离子体纳米结构可用作机械可调的等离子体光学滤光片和传感器。

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