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碳纳米管:功能化及其在化学传感器中的应用

Carbon nanotubes: functionalisation and their application in chemical sensors.

作者信息

Norizan Mohd Nurazzi, Moklis Muhammad Harussani, Ngah Demon Siti Zulaikha, Halim Norhana Abdul, Samsuri Alinda, Mohamad Imran Syakir, Knight Victor Feizal, Abdullah Norli

机构信息

Department of Chemistry and Biology, Centre for Defence Foundation Studies, Universiti Pertahanan Nasional Malaysia Kem Perdana Sungai Besi 57000 Kuala Lumpur Malaysia

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

出版信息

RSC Adv. 2020 Dec 9;10(71):43704-43732. doi: 10.1039/d0ra09438b. eCollection 2020 Nov 27.

Abstract

Carbon nanotubes (CNTs) have been recognised as a promising material in a wide range of applications, from safety to energy-related devices. However, poor solubility in aqueous and organic solvents has hindered the utilisation and applications of carbon nanotubes. As studies progressed, the methodology for CNTs dispersion was established. The current state of research in CNTs either single wall or multiwall/polymer nanocomposites has been reviewed in context with the various types of functionalisation presently employed. Functionalised CNTs have been playing an increasingly central role in the research, development, and application of carbon nanotube-based nanomaterials and systems. The extremely high surface-to-volume ratio, geometry, and hollow structure of nanomaterials are ideal for the adsorption of gas molecules. This offers great potential applications, such as in gas sensor devices working at room temperature. Particularly, the advent of CNTs has fuelled the invention of CNT-based gas sensors which are very sensitive to the surrounding environment. The presence of O, NH, NO gases and many other chemicals and molecules can either donate or accept electrons, resulting in an alteration of the overall conductivity. Such properties make CNTs ideal for nano-scale gas-sensing materials. Conductive-based devices have already been demonstrated as gas sensors. However, CNTs still have certain limitations for gas sensor application, such as a long recovery time, limited gas detection, and weakness to humidity and other gases. Therefore, the nanocomposites of interest consisting of polymer and CNTs have received a great deal of attention for gas-sensing application due to higher sensitivity over a wide range of gas concentrations at room temperature compared to only using CNTs and the polymer of interest separately.

摘要

碳纳米管(CNTs)已被公认为是一种在从安全到能源相关设备等广泛应用中具有潜力的材料。然而,其在水性和有机溶剂中的溶解性较差,这阻碍了碳纳米管的利用和应用。随着研究的进展,碳纳米管分散的方法得以确立。本文结合目前采用的各种功能化类型,综述了单壁或多壁碳纳米管/聚合物纳米复合材料的研究现状。功能化碳纳米管在基于碳纳米管的纳米材料和系统的研究、开发及应用中发挥着越来越核心的作用。纳米材料极高的表面积与体积比、几何形状和中空结构非常适合气体分子的吸附。这为其提供了巨大的潜在应用,比如在室温下工作的气体传感器设备中。特别是,碳纳米管的出现推动了对周围环境非常敏感的基于碳纳米管的气体传感器的发明。O、NH、NO气体以及许多其他化学物质和分子的存在可以给出或接受电子,从而导致整体电导率的改变。这些特性使碳纳米管成为纳米级气体传感材料的理想选择。基于导电的器件已被证明可作为气体传感器。然而,碳纳米管在气体传感器应用中仍存在一定局限性,如恢复时间长、气体检测有限以及对湿度和其他气体敏感等问题。因此,由聚合物和碳纳米管组成的纳米复合材料因其在室温下相比于单独使用碳纳米管和相关聚合物在更广泛的气体浓度范围内具有更高的灵敏度,而在气体传感应用中受到了广泛关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/981c/9058486/f9861bca6996/d0ra09438b-f1.jpg

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