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基于垂直取向氧化锌纳米材料的气体传感器的最新进展与展望

Recent progress and perspectives of gas sensors based on vertically oriented ZnO nanomaterials.

作者信息

Ahmad Rafiq, Majhi Sanjit Manohar, Zhang Xixiang, Swager Timothy M, Salama Khaled N

机构信息

Sensors Lab, Electrical Engineering Program, Computer, Electrical and Mathematical Science and Engineering Division, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.

Physical Sciences and Engineering Division, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.

出版信息

Adv Colloid Interface Sci. 2019 Aug;270:1-27. doi: 10.1016/j.cis.2019.05.006. Epub 2019 May 22.

Abstract

Vertically oriented zinc oxide (ZnO) nanomaterials, such as nanorods (NRs), nanowires (NWs), nanotubes (NTs), nanoneedles (NNs), and nanosheets (NSs), are highly ordered architectures that provide remarkable properties for sensors. Furthermore, these nanostructures have fascinating features, including high surface-area-to-volume ratios, high charge carrier concentrations, and many surface-active sites. These features make vertically oriented ZnO nanomaterials exciting candidates for gas sensor fabrication. The development of efficient methods for the production of vertically oriented nanomaterial electrode surfaces has resulted in improved stability, high reproducibility, and gas sensing performance. Moving beyond conventional fabrication processes that include binders and nanomaterial deposition steps has been crucial, as the materials from these processes suffer from poor stability, low reproducibility, and marginal sensing performance. In this feature article, we comprehensively describe vertically oriented ZnO nanomaterials for gas sensing applications. The uses of such nanomaterials for gas sensor fabrication are discussed in the context of ease of growth, stability on an electrode surface, growth reproducibility, and enhancements in device efficiency as a result of their unique and advantageous features. In addition, we summarize applications of gas sensors for a variety of toxic and volatile organic compound (VOC) gases, and we discuss future directions of the vertically oriented ZnO nanomaterials.

摘要

垂直取向的氧化锌(ZnO)纳米材料,如纳米棒(NRs)、纳米线(NWs)、纳米管(NTs)、纳米针(NNs)和纳米片(NSs),是高度有序的结构,为传感器提供了卓越的性能。此外,这些纳米结构具有迷人的特性,包括高的表面积与体积比、高电荷载流子浓度以及许多表面活性位点。这些特性使垂直取向的ZnO纳米材料成为气体传感器制造的令人兴奋的候选材料。高效生产垂直取向纳米材料电极表面方法的发展带来了稳定性的提高、高再现性和气体传感性能。超越包括粘合剂和纳米材料沉积步骤的传统制造工艺至关重要,因为这些工艺的材料稳定性差、再现性低且传感性能有限。在这篇专题文章中,我们全面描述了用于气体传感应用的垂直取向ZnO纳米材料。在易于生长、在电极表面的稳定性、生长再现性以及由于其独特和有利特性而提高器件效率的背景下,讨论了此类纳米材料在气体传感器制造中的用途。此外,我们总结了气体传感器对各种有毒和挥发性有机化合物(VOC)气体的应用,并讨论了垂直取向ZnO纳米材料的未来发展方向。

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