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Fabrication and applications of ultraflexible nanostructures using dielectric heating-assisted nanoimprint on PVC films

机译:超薄纳米结构在PVC薄膜上使用介电加热辅助纳米瘤的制造和应用

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AbstractWe developed dielectric heating-assisted nanoimprint method for rapid fabrication of ultraflexible nanostructures. Using spin-coating polyvinyl-chloride (PVC) film on the glass slide, the dielectric heating on PVC film helped the pattern transfer from the mold to PVC film in few seconds. Various kinds of nanostructures were successfully made on PVC films with about 20-μm thickness. We demonstrated the applications of ultraflexible metallic nanostructures for bending measurement using surface plasmon resonance (SPR) and surface enhanced Raman scattering (SERS) on the curved surfaces. For measuring bending angles using SPR on capped nanowire arrays, the minimum detection angle was 2.4?×?10?3degree under 0.02?nm wavelength resolution. For SERS measurement, the nanorod arrays on a curved substrate can increase SERS signals for two times as compared to planar SERS substrate.]]>
机译:<![CDATA [ 抽象 我们开发了介电加热辅助纳米视图方法,用于快速制造超折叠纳米结构。在载玻片上使用旋涂聚乙烯 - 氯化物(PVC)膜,PVC膜上的电介质加热有助于在几秒钟内从模具转移到PVC膜上。在PVC膜上成功地制造了各种纳米结构,其中约20- μ-c:斜体> M厚度。我们证明了使用曲面上的表面等离子体共振(SPR)和表面增强拉曼散射(SERS)在弯曲表面上使用弯曲测量的超弯曲金属纳米结构。为了测量使用SPR上盖纳米线阵列的弯曲角度,最小检测角度为2.4?×10 α3度为0.02Ω·nm波长分辨率。对于SERS测量,与平面SERS衬底相比,弯曲基板上的纳米棒阵列可以增加两次SERS信号。 ]]>

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