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NiO decorated CeO2 nanostructures as room temperature isopropanol gas sensors

机译:NiO装饰的CeO2纳米结构作为室温异丙醇气体传感器

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摘要

Heterostructures developed using CeO _(2) show promising peculiarities in the field of metal oxide gas sensors due to the great variations in the resistance during the adsorption and desorption processes. NiO decorated CeO _(2) nanostructures (NiO/CeO _(2) ) were synthesized via a facile two-step process. High resolution transmission electron microscopy (HRTEM) results revealed the perfect decoration of NiO on the CeO _(2) surface. The porous nature of the NiO/CeO _(2) sensor surface was confirmed from scanning electron microscopy (SEM) analysis. Gas sensing studies of pristine CeO _(2) and NiO/CeO _(2) sensors were performed under room conditions and enhanced gas sensing properties for the NiO/CeO _(2) sensor towards isopropanol were observed. Decoration of NiO on the CeO _(2) surface develops a built-in potential at the interface of NiO and CeO _(2) which played a vital role in the superior sensing performance of the NiO/CeO _(2) sensor. Sharp response and recovery times (15 s/19 s) were observed for the NiO/CeO _(2) sensor towards 100 ppm isopropanol at room temperature. Long-term stability of the NiO/CeO _(2) sensor was also studied and discussed. From all the results it is concluded that the decoration of NiO on the CeO _(2) surface could significantly enhance the sensing performance and it has great advantages in designing best performing isopropanol gas sensors.
机译:由于吸附和解吸过程中电阻的巨大变化,使用CeO _(2)开发的异质结构在金属氧化物气体传感器领域显示出令人鼓舞的特性。通过简便的两步法合成了NiO装饰的CeO _(2)纳米结构(NiO / CeO _(2))。高分辨率透射电子显微镜(HRTEM)结果显示,在CeO _(2)表面上NiO的完美装饰。 NiO / CeO_(2)传感器表面的多孔性已通过扫描电子显微镜(SEM)分析得到确认。在室温下对原始CeO _(2)和NiO / CeO _(2)传感器进行气敏研究,观察到NiO / CeO _(2)传感器对异丙醇的气敏性能增强。在CeO _(2)表面上装饰NiO会在NiO和CeO _(2)的界面上产生内置电位,这在NiO / CeO _(2)传感器的出色传感性能中起着至关重要的作用。 NiO / CeO_(2)传感器在室温下对100 ppm异丙醇的响应时间和恢复时间(15 s / 19 s)明显。还对NiO / CeO _(2)传感器的长期稳定性进行了研究和讨论。从所有结果可以得出结论,在CeO _(2)表面上装饰NiO可以显着增强传感性能,并且在设计性能最佳的异丙醇气体传感器方面具有很大的优势。

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