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静电纺丝法制备的ZnO/Pd纳米纤维作为无氧气相中氢气检测的高灵敏度材料

Electrospun ZnO/Pd Nanofibers as Extremely Sensitive Material for Hydrogen Detection in Oxygen Free Gas Phase.

作者信息

Platonov Vadim, Nasriddinov Abulkosim, Rumyantseva Marina

机构信息

Chemistry Department, Moscow State University, 119991 Moscow, Russia.

出版信息

Polymers (Basel). 2022 Aug 25;14(17):3481. doi: 10.3390/polym14173481.

Abstract

The development of safety sensors is an urgent necessity for the successful use of hydrogen in real conditions, which may differ, in particular, by the oxygen content in the surrounding atmosphere. Palladium-modified zinc oxide shows the high sensitivity when detecting hydrogen in air; however, studies of the sensor properties and the operation mechanism of the ZnO/Pd sensor when reducing gases are detected in an oxygen deficient or inert atmosphere have not been effectuated. In this work, we synthesized the ZnO and ZnO/Pd nanofibers by electrospinning and for the first time determined their sensor properties in the detection of CO, NH and H in different oxygen backgrounds. The microstructure and composition of nanofibers were characterized by electron microscopy, X-ray diffraction, X-ray fluorescent spectroscopy, and X-ray photoelectron spectroscopy. The interaction with the gas phase was investigated in situ by diffuse reflectance IR Fourier transform spectroscopy (DRIFTS). The sensor properties of ZnO and ZnO/Pd nanofibers were studied at 100-450 °C towards CO, NH and H in the N/O gas mixtures containing 0.0005-20% O. When detecting CO, a decrease in the oxygen concentration from 20 to 0.0005% in the gas phase does not lead to a significant change in the sensor response. At the same time, when detecting NH and especially H, a decrease in oxygen concentration down to 0.0005% results in the dramatic increase in the sensor response of ZnO/Pd nanofibers. This result is discussed in terms of palladium hydride formation, modulation of the potential barrier at the ZnO/Pd interface, as well as changes in the concentration of donor defects and charge carriers in the ZnO matrix. Synthesized electrospun ZnO/Pd nanofibers are extremely promising materials for sensors for detecting hydrogen in an oxygen free atmosphere.

摘要

安全传感器的开发对于在实际条件下成功使用氢气至关重要,实际条件可能存在差异,尤其是周围大气中的氧气含量。钯修饰的氧化锌在检测空气中的氢气时表现出高灵敏度;然而,尚未对在缺氧或惰性气氛中检测还原气体时ZnO/Pd传感器的传感特性和运行机制进行研究。在这项工作中,我们通过静电纺丝合成了ZnO和ZnO/Pd纳米纤维,并首次确定了它们在不同氧气背景下检测CO、NH₃和H₂时的传感特性。通过电子显微镜、X射线衍射、X射线荧光光谱和X射线光电子能谱对纳米纤维的微观结构和组成进行了表征。通过漫反射红外傅里叶变换光谱(DRIFTS)原位研究了与气相的相互作用。在100-450°C下,研究了ZnO和ZnO/Pd纳米纤维在含有0.0005-20% O₂的N₂/O₂气体混合物中对CO、NH₃和H₂的传感特性。检测CO时,气相中氧气浓度从20%降至0.0005%不会导致传感器响应发生显著变化。同时,检测NH₃尤其是H₂时,氧气浓度降至0.0005%会导致ZnO/Pd纳米纤维的传感器响应急剧增加。从氢化钯的形成、ZnO/Pd界面势垒的调制以及ZnO基体中施主缺陷和电荷载流子浓度的变化等方面对这一结果进行了讨论。合成的静电纺ZnO/Pd纳米纤维是用于在无氧气氛中检测氢气的传感器的极具前景的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6736/9459723/01b0d9c54b57/polymers-14-03481-g001.jpg

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