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首页> 外文期刊>ACS applied materials & interfaces >Extremely Sensitive and Selective NO Probe Based on Villi-like WO3 Nanostructures for Application to Exhaled Breath Analyzers
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Extremely Sensitive and Selective NO Probe Based on Villi-like WO3 Nanostructures for Application to Exhaled Breath Analyzers

机译:基于绒毛状WO3纳米结构的极灵敏和选择性NO探针,用于呼气分析仪

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摘要

Self-assembled WO3 thin film nanostructures with 1-dimensional villi-like nanofingers (VLNF) have been synthesized on the Si02/Si substrate with Pt interdigitated electrodes using glancing angle deposition (GAD). Room-temperature deposition of WO3 by GAD resulted in anisotropic nanostructures with large aspect ratio and porosity having a relative surface area, which is about 32 times larger than that of a plain WO3 film. A WO3 VLNF sensor shows extremely high response to nitric oxide (NO) at 200 °C in 80% of relative humidity atmosphere, while responses of the sensor to ethanol, acetone, ammonia, and carbon monoxide are negligible. Such high sensitivity and selectivity to NO are attributed to the highly efficient modualtion of potential barriers at narrow necks between individual WO3 VLNF and the intrinsically high sensitivity of WO3 to NO. The theoretical detection limit of the sensor for NO is expected to be as low as 88 parts per trillion (ppt). Since NO is an approved biomarker of chronic airway inflammation in asthma, unprecedentedly high response and selectivity, and ppt-level detection limit to NO under highly humid environment demonstrate the great potential of the WO3 VLNF for use in high performance breath analyzers,
机译:使用掠角沉积(GAD)在具有Pt叉指电极的SiO2 / Si衬底上合成了具有一维绒毛状纳米指(VLNF)的自组装WO3薄膜纳米结构。通过GAD在室温下沉积WO3,得到具有大的长宽比和具有相对表面积的孔隙率的各向异性纳米结构,该结构是普通WO3膜的约32倍。 WO3 VLNF传感器在80%的相对湿度气氛中,在200°C下对一氧化氮(NO)表现出极高的响应,而对乙醇,丙酮,氨和一氧化碳的响应则可以忽略不计。对NO的如此高的敏感性和选择性归因于单个WO3 VLNF之间狭窄颈部的潜在势垒的高效调节以及WO3对NO的固有高敏感性。传感器对NO的理论检测极限有望低至88万亿分之一(ppt)。由于NO是公认的哮喘慢性气道炎症的生物标志物,因此空前的高响应和选择性以及高度潮湿环境下对NO的ppt级检测极限证明了WO3 VLNF在高性能呼吸分析仪中的巨大潜力,

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