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Pretreated Butterfly Wings for Tuning the Selective Vapor Sensing

机译:预处理蝴蝶翼,用于调节选择性蒸气感测

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Photonic nanoarchitectures occurring in the scales of Blue butterflies are responsible for their vivid blue wing coloration. These nanoarchitectures are quasi-ordered nanocomposites which are constituted from a chitin matrix with embedded air holes. Therefore, they can act as chemically selective sensors due to their color changes when mixing volatile vapors in the surrounding atmosphere which condensate into the nanoarchitecture through capillary condensation. Using a home-built vapor-mixing setup, the spectral changes caused by the different air + vapor mixtures were efficiently characterized. It was found that the spectral shift is vapor-specific and proportional with the vapor concentration. We showed that the conformal modification of the scale surface by atomic layer deposition and by ethanol pretreatment can significantly alter the optical response and chemical selectivity, which points the way to the efficient production of sensor arrays based on the knowledge obtained through the investigation of modified butterfly wings.
机译:蓝蝴蝶鳞片中出现的光子纳米结构是其生动的蓝色翅膀着色的原因。这些纳米结构是准次序的纳米复合材料,由具有嵌入气孔的几丁质基质构成。因此,由于它们在周围大气中混合通过毛细管冷凝而冷凝成纳米结构的挥发性蒸汽时会发生颜色变化,因此它们可以用作化学选择性传感器。使用自制的蒸汽混合装置,可以有效地表征由不同的空气+蒸汽混合物引起的光谱变化。已经发现,光谱偏移是蒸气特异性的并且与蒸气浓度成比例。我们表明,通过原子层沉积和乙醇预处理对水垢表面进行共形修饰可以显着改变光学响应和化学选择性,这是基于对修饰蝶形的研究所获得的知识的基础,从而可以高效生产传感器阵列翅膀。

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