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首页> 外文期刊>ACS applied materials & interfaces >Highly Sensitive, Selective, and Flexible NO2 Chemiresistors Based on Multilevel Structured Three-Dimensional Reduced Graphene Oxide Fiber Scaffold Modified with Aminoanthroquinone Moieties and Ag Nanoparticles
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Highly Sensitive, Selective, and Flexible NO2 Chemiresistors Based on Multilevel Structured Three-Dimensional Reduced Graphene Oxide Fiber Scaffold Modified with Aminoanthroquinone Moieties and Ag Nanoparticles

机译:高敏感,选择性和柔性NO2化学体基于多级结构化三维氧化石墨烯氧化物支架,用氨基蒽醌部分和Ag纳米粒子改性

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摘要

Highly sensitive, selective, and room-temperature-performing gas sensors have always been the pursuit in the sensing field for practical applications. However, the existing gas sensors can seldom satisfy the aforementioned requirements. Here, we integrate zero-dimensional Ag nanoparticles (AgNPs), one-dimensional polymer fibers, and two-dimensional aminoanthroquinone-functionalized reduced graphene oxide (AQRGO) sheets into a three-dimensional sensing scaffold (AgNP-3D-AQRGO) for high-performance NO2 sensing. The AQ moieties and AgNPs are decorated onto the RGO sheets through a wet chemical route. Electrospinning and self-assembly techniques are employed to assemble the polymer fibers and the functional RGO sheets into a three-dimensional scaffold. The resulting AgNP-3D-AQRGO-based gas sensor can perform at room temperature and exhibits excellent sensing performance for NO2, including an ultrahigh sensitivity (10.3 ppm(-1)), an ultralow limit of detection (0.6 ppb), and an extremely remarkable selectivity to solely NO2 molecules. Furthermore, the sensor is also highly flexible, demonstrating great potential for portable and real-time monitoring of toxic gas in personal mobile electronics.
机译:高度敏感,选择性和室温性能的气体传感器始终是实际应用的传感领域的追求。然而,现有的气体传感器很少满足上述要求。在此,我们将零尺寸Ag纳米颗粒(AgNP),一维聚合物纤维和二维氨基蒽醌官能化的还原的石墨烯(AQRGO)片材用于高 - 感应支架(AGNP-3D-AQRGO)的高 - 性能NO2感应。 AQ部分和AgNP通过湿化学路线装饰到RGO板上。使用静电纺丝和自组装技术将聚合物纤维和功能性RGO片材组装成三维支架。由此产生的AGNP-3D-AQRGO基气体传感器可以在室温下进行,并且表现出优异的NO2的感测性能,包括超高敏感性(10.3ppm(-1)),检测超极限(0.6 ppb),以及极其对NO2分子的显着选择性。此外,传感器也非常灵活,展示了个人移动电子设备中有毒气体的便携式和实时监测的巨大潜力。

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