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Gas-Sensing Devices Based on Zn-Doped NiO Two-Dimensional Grainy Films with Fast Response and Recovery for Ammonia Molecule Detection

机译:基于Zn掺杂的NiO二维颗粒膜的氨气分子检测快速响应与恢复的气体传感装置

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摘要

Zn-doped NiO two-dimensional grainy films on glass substrates are shown to be an ammonia-sensing material with excellent comprehensive performance, which could real-time detect and monitor ammonia (NH3) in the surrounding environment. The morphology and structure analysis indicated that the as-fabricated semiconductor films were composed of particles with diameters ranging from 80 to 160 nm, and each particle was composed of small crystalline grain with a narrow size about 20 nm, which was the face-centered cubic single crystal structure. X-ray diffraction peaks shifted toward lower angle, and the size of the lattice increased compared with undoped NiO, which demonstrated that zinc ions have been successfully doped into the NiO host structure. Simultaneously, we systematically investigated the gas-sensing properties of the Zn-doped NiO sensors for NH3 detection at room temperature. The sensor based on doped NiO sensing films gave four to nine times faster response and four to six times faster recovery speeds than those of sensor with undoped NiO films, which is important for the NiO sensor practical applications. Moreover, we found that the doped NiO sensors owned outstanding selectivity toward ammonia.
机译:玻璃基板上的Zn掺杂NiO二维颗粒膜是一种氨感测材料,具有优异的综合性能,可以实时检测和监测周围环境中的氨(NH3)。形态和结构分析表明,制成的半导体膜由直径范围为80至160nm的颗粒组成,每个颗粒均由细小的晶粒组成,晶粒的粒径约为20nm,是面心立方单晶结构。与未掺杂的NiO相比,X射线衍射峰向较低的角度偏移,并且晶格的尺寸增加,这表明锌离子已成功地掺杂到NiO主体结构中。同时,我们系统地研究了室温下用于NH3检测的掺杂Zn的NiO传感器的气敏特性。与未掺杂NiO薄膜的传感器相比,基于掺杂NiO传感膜的传感器的响应速度快四到九倍,恢复速度快四到六倍,这对于NiO传感器的实际应用非常重要。此外,我们发现掺杂的NiO传感器对氨具有出色的选择性。

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