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Ultrathin Suspended Nanopores with Surface Plasmon Resonance Fabricated by Combined Colloidal Lithography and Film Transfer

机译:胶体光刻与膜转移相结合制造的具有表面等离子体共振的超薄悬浮纳米孔

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摘要

Suspended plasmonic nanopores in ultrathin film layers were fabricated through a simple and widely applicable method combining colloidal lithography and thin film transfer, which allows mass production of short-range ordered nanopore arrays on a large scale. By this combined method, mechanically stable and flexible free-standing nanopore membranes with a thickness down to 15—30 run were produced. The plasmon resonances of the ultrathin plasmonic nanopores fabricated in AIN/Au/AlN trilayer and single layer Au membranes were tuned to lie in the vis—NIR wavelength range by properly designing their dimensions. The optical responses to the refractive index changes were tested and applied to adlayer sensing. The trilayer nanopore membrane showed a unique property to support water only on one side of the membrane, which was confirmed by the resonance shift and comparison with numerical simulation. Pore size reduction down to 10 nm can be achieved through additional material deposition. The filtering function of such ppre-size-reduced conical shaped nanofunnels has also been demonstrated. The presented nanopore fabrication method offers new platforms for ultrathin nanopore sensing or filtering devices with controlled pore-size and optical properties. The film transfer technique employed in this work would enable the transformation of any substrate-based haripstruaures to free-standing membrane based devices without complicated multiple etching processes.
机译:通过将胶体光刻和薄膜转移相结合的简单且广泛适用的方法,可以制得超薄膜层中的悬浮等离激元纳米孔,从而可以大规模生产短程有序纳米孔阵列。通过这种组合方法,可以生产出厚度低至15-30纳米的机械稳定且柔软的独立式纳米孔膜。通过适当设计尺寸,可以将在AIN / Au / AlN三层膜和单层Au膜中制造的超薄等离子体纳米孔的等离子体共振调整到vis-NIR波长范围内。测试了对折射率变化的光学响应,并将其应用于附加层传感。三层纳米孔膜显示出仅在膜的一侧上支持水的独特性质,这通过共振位移和与数值模拟的比较得到证实。通过额外的材料沉积,可以将孔径减小到10 nm。还已经证明了这种预减小尺寸的圆锥形纳米漏斗的过滤功能。提出的纳米孔制造方法为具有受控孔径和光学特性的超薄纳米孔传感或过滤设备提供了新平台。在这项工作中采用的薄膜转移技术将使任何基于衬底的金线鱼属植物转化为独立的基于膜的装置,而无需复杂的多次蚀刻工艺。

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