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热退火与水热处理对氧化锌纳米线检测性能的影响比较

Comparison of Thermal Annealing Hydrothermal Treatment Effects on the Detection Performances of ZnO Nanowires.

作者信息

Lupan Oleg, Magariu Nicolae, Khaledialidusti Rasoul, Mishra Abhishek Kumar, Hansen Sandra, Krüger Helge, Postica Vasile, Heinrich Helge, Viana Bruno, Ono Luis Katsuya, Cuenya Beatriz Roldan, Chow Lee, Adelung Rainer, Pauporté Thierry

机构信息

PSL Université, Chimie ParisTech, Institut de Recherche de Chimie Paris-IRCP, CNRS UMR8247, Rue Pierre et Marie Curie 11, 75005 Paris, France.

Functional Nanomaterials, Institute for Materials Science, Faculty of Engineering, Kiel University, Street Kaiserstraße 2, D-24143 Kiel, Germany.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 3;13(8):10537-10552. doi: 10.1021/acsami.0c19170. Epub 2021 Feb 18.

Abstract

A comparative investigation of the post-electroplating treatment influence on the gas detecting performances of single ZnO nanorod/nanowire (NR/NW), as grown by electrochemical deposition (ECD) and integrated into nanosensor devices, is presented. In this work, hydrothermal treatment (HT) in a HO steam and conventional thermal annealing (CTA) in a furnace at 150 °C in ambient were used as post-growth treatments to improve the material properties. Herein, the morphological, optical, chemical, structural, vibrational, and gas sensing performances of the as-electrodeposited and treated specimens are investigated and presented in detail. By varying the growth temperature and type of post-growth treatment, the morphology is maintained, whereas the optical and structural properties show increased sample crystallization. It is shown that HT in HO vapors affects the optical and vibrational properties of the material. After investigation of nanodevices based on single ZnO NR/NWs, it was observed that higher temperature during the synthesis results in a higher gas response to H gas within the investigated operating temperature range from 25 to 150 °C. CTA and HT or autoclave treatment showed the capability of a further increase in gas response of the prepared sensors by a factor of ∼8. Density functional theory calculations reveal structural and electronic band changes in ZnO surfaces as a result of strong interaction with H gas molecules. Our results demonstrate that high-performance devices can be obtained with high-crystallinity NWs/NRs after HT. The obtained devices could be the key element for flexible nanoelectronics and wearable electronics and have attracted great interest due to their unique specifications.

摘要

本文介绍了对通过电化学沉积(ECD)生长并集成到纳米传感器器件中的单个ZnO纳米棒/纳米线(NR/NW)进行电镀后处理对其气体检测性能影响的对比研究。在这项工作中,在HO蒸汽中进行水热处理(HT)和在环境温度下于150°C的炉中进行常规热退火(CTA)被用作生长后处理以改善材料性能。在此,详细研究并展示了电沉积和处理后样品的形态、光学、化学、结构、振动和气体传感性能。通过改变生长温度和生长后处理类型,形态得以保持,而光学和结构性能显示出样品结晶度增加。结果表明,在HO蒸汽中进行水热处理会影响材料的光学和振动性能。在对基于单个ZnO NR/NW的纳米器件进行研究后发现,在所研究的25至150°C工作温度范围内,合成过程中较高的温度会导致对H气体的气体响应更高。CTA以及HT或高压釜处理显示出所制备传感器的气体响应能力可进一步提高约8倍。密度泛函理论计算揭示了由于与H气体分子的强相互作用,ZnO表面的结构和电子能带发生了变化。我们的结果表明,水热处理后具有高结晶度的NWs/NRs可获得高性能器件。所获得的器件可能是柔性纳米电子学和可穿戴电子学的关键元件,因其独特的特性而引起了极大的兴趣。

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