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Fast electrical response to volatile organic compounds of 2D Au nanoparticle layers embedded into polymers

机译:对嵌入聚合物中的二维金纳米颗粒层的挥发性有机化合物的快速电响应

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摘要

The conductivity of polymer-metal nanocomposites close to the percolation threshold is very sensitive to changes in the metal nanoparticle distances. Here the technical feasibility of a novel type of easy to prepare polymer-metal nanocomposite sensor is explored, which shall be able to detect a unique signal for various volatile organic compounds (VOCs) exhibiting a fast and reversible response. The composite consists of a nearly 2-dimensional Au nanoparticle layer near the percolation threshold thermally embedded into a thermoplastic polymer film. The sensoric response is based on the swelling behavior of the polymeric matrix upon exposure to the organic vapor molecules. Different from conventional nanocomposite sensors that require long-range diffusion of the volatile compound into the bulk of the matrix, the electrical response here only requires the penetration of the VOC a few nanometer below the surface thus causing a rapid detection. The degree of swelling depends on the type of polymer and VOC used as well as on the vapor pressure of the VOC leading to a characteristic response of each polymer to a specific VOC. This enables a " fingerprint" detection of different VOCs by an array of different polymer nanocomposite combined into one sensoric device.
机译:接近渗透阈值的聚合物-金属纳米复合材料的电导率对金属纳米颗粒距离的变化非常敏感。这里探讨了一种新型的易于制备的聚合物-金属纳米复合传感器的技术可行性,该传感器应能够检测出表现出快速且可逆响应的各种挥发性有机化合物(VOC)的独特信号。该复合物由接近二维阈值的近二维Au纳米粒子层组成,该纳米粒子层热嵌入热塑性聚合物薄膜中。感官响应是基于聚合物基体在暴露于有机蒸气分子后的溶胀行为。与传统的纳米复合传感器不同,传统的纳米复合传感器需要将挥发性化合物长距离扩散到整个基质中,而此处的电响应仅需要VOC渗透到表面以下几纳米的位置,从而可以进行快速检测。溶胀程度取决于所用聚合物和VOC的类型,以及取决于导致每种聚合物对特定VOC的特征响应的VOC的蒸气压。这通过组合到一个传感设备中的一系列不同的聚合物纳米复合材料,可以对不同的VOC进行“指纹”检测。

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