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首页> 外文期刊>ACS applied materials & interfaces >Highly Sensitive and Contactless Ammonia Detection Based on Nanocomposites of Phosphate-Functionalized Reduced Graphene Oxide/Polyaniline Immobilized on Microstrip Resonators
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Highly Sensitive and Contactless Ammonia Detection Based on Nanocomposites of Phosphate-Functionalized Reduced Graphene Oxide/Polyaniline Immobilized on Microstrip Resonators

机译:基于磷酸盐官能化的磷酸官能化的氧化石墨烯氧化物/聚苯胺的高敏感和非接触氨检测,其固定在微带谐振器上

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Ammonia is a key compound in a variety of industrial sectors, including automotive, chemical, and food. Its hazardous effects on the environment and human health require the implementation of proper safety guidelines and monitoring techniques. An attractive approach is to add sensing functionality to low-cost wireless communication devices to allow for the monitoring/mapping of the chemical environment across a large area. This study outlines a highly sensitive contactless ammonia gas sensor with the potential for continuous and wireless mapping of ammonia emissions by integrating an antenna on the device. The devices were fabricated by casting a novel advanced sensing nanocomposite, polyaniline (PANT), and phosphate-functionalized reduced graphene oxide (P-rGO) on split-ring resonators (SRRs). P-rGO incorporation in PANI produced a positive-sensing synergistic effect to multiply the sensing response severalfold to ammonia and dimethylamine gases. Furthermore, we identified that the modification of the semiconductive behavior of the nanosheets, achieved via phosphate functionalization, is the key factor to the positive-sensing synergy observed in the nanocomposites because of the formation of localized heterojunctions. The prepared SRRs exhibited remarkably a low detection limit, similar to 1 ppm, to ammonia gas, as well as good stability and selectivity, which paves the path for a novel generation of wireless, chipless, potentially fully printable, and passive sensor platforms.
机译:氨是各种工业部门的关键化合物,包括汽车,化学品和食物。它对环境和人类健康的危险作用需要实施适当的安全指导和监测技术。一种有吸引力的方法是将感测功能添加到低成本的无线通信设备,以允许在大面积上监视/映射化学环境。本研究概述了一种高度敏感的非接触氨气传感器,其具有通过在装置上积分天线来连续和无线映射氨排放的潜力。通过铸造新型先进的传感纳米复合材料,聚苯胺(裤)和磷酸官能化的磷酸官能化的石墨烯氧化物(P-RGO)来制造这些装置。 P-Rgo在Pani的掺入产生了积极感应的协同效果,以使感测响应对氨和二甲胺气体的感测响应倍增。此外,我们认为通过磷酸官能化实现的纳米片的半导体行为的修饰是由于局部异质结的形成,纳米复合材料中观察到的正面感测协同作用的关键因素。所制备的SRRS具有显着的低检测限,类似于1 ppm,氨气以及良好的稳定性和选择性,铺设了新颖的无线,芯片,潜在可印刷和被动传感器平台的路径。

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