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rGO/金属氧化物纳米复合材料异质结作为有前景的气敏材料——综述

Heterojunctions of rGO/Metal Oxide Nanocomposites as Promising Gas-Sensing Materials-A Review.

作者信息

Norizan Mohd Nurazzi, Abdullah Norli, Halim Norhana Abdul, Demon Siti Zulaikha Ngah, Mohamad Imran Syakir

机构信息

Centre for Defence Foundation Studies, National Defence University of Malaysia, Kem Sungai Besi, Kuala Lumpur 57000, Malaysia.

Faculty of Mechanical Engineering, Universiti Teknikal Malaysia Melaka, Hang Tuah Jaya, Durian Tunggal, Melaka 76100, Malaysia.

出版信息

Nanomaterials (Basel). 2022 Jul 1;12(13):2278. doi: 10.3390/nano12132278.

Abstract

Monitoring environmental hazards and pollution control is vital for the detection of harmful toxic gases from industrial activities and natural processes in the environment, such as nitrogen dioxide (NO), ammonia (NH), hydrogen (H), hydrogen sulfide (HS), carbon dioxide (CO), and sulfur dioxide (SO). This is to ensure the preservation of public health and promote workplace safety. Graphene and its derivatives, especially reduced graphene oxide (rGO), have been designated as ideal materials in gas-sensing devices as their electronic properties highly influence the potential to adsorb specified toxic gas molecules. Despite its exceptional sensitivity at low gas concentrations, the sensor selectivity of pristine graphene is relatively weak, which limits its utility in many practical gas sensor applications. In view of this, the hybridization technique through heterojunction configurations of rGO with metal oxides has been explored, which showed promising improvement and a synergistic effect on the gas-sensing capacity, particularly at room temperature sensitivity and selectivity, even at low concentrations of the target gas. The unique features of graphene as a preferential gas sensor material are first highlighted, followed by a brief discussion on the basic working mechanism, fabrication, and performance of hybridized rGO/metal oxide-based gas sensors for various toxic gases, including NO, NH, H, HS, CO, and SO. The challenges and prospects of the graphene/metal oxide-based based gas sensors are presented at the end of the review.

摘要

监测环境危害和污染控制对于检测来自工业活动和环境中自然过程产生的有害有毒气体至关重要,例如二氧化氮(NO)、氨(NH)、氢气(H)、硫化氢(HS)、二氧化碳(CO)和二氧化硫(SO)。这是为了确保公众健康并促进工作场所安全。石墨烯及其衍生物,特别是还原氧化石墨烯(rGO),因其电子特性对吸附特定有毒气体分子的潜力有很大影响,已被指定为气体传感装置中的理想材料。尽管原始石墨烯在低气体浓度下具有出色的灵敏度,但其传感器选择性相对较弱,这限制了它在许多实际气体传感器应用中的效用。有鉴于此,人们探索了通过rGO与金属氧化物的异质结结构进行杂交的技术,该技术对气敏能力显示出有前景的改进和协同效应,特别是在室温下的灵敏度和选择性方面,即使在目标气体浓度较低时也是如此。首先强调了石墨烯作为优先气敏材料的独特特性,随后简要讨论了基于rGO/金属氧化物的混合气体传感器对各种有毒气体(包括NO、NH、H、HS、CO和SO)的基本工作机制、制造和性能。综述结尾介绍了基于石墨烯/金属氧化物的气体传感器所面临的挑战和前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1863/9268638/e0c5633e3843/nanomaterials-12-02278-g001.jpg

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