Department of Chemistry and Institute for Soldier Nanotechnologies , Massachusetts Institute of Technology , 77 Massachusetts Avenue , Cambridge Massachusetts 02139 , United States.
Chem Rev. 2019 Jan 9;119(1):599-663. doi: 10.1021/acs.chemrev.8b00340. Epub 2018 Sep 18.
Carbon nanotubes (CNTs) promise to advance a number of real-world technologies. Of these applications, they are particularly attractive for uses in chemical sensors for environmental and health monitoring. However, chemical sensors based on CNTs are often lacking in selectivity, and the elucidation of their sensing mechanisms remains challenging. This review is a comprehensive description of the parameters that give rise to the sensing capabilities of CNT-based sensors and the application of CNT-based devices in chemical sensing. This review begins with the discussion of the sensing mechanisms in CNT-based devices, the chemical methods of CNT functionalization, architectures of sensors, performance parameters, and theoretical models used to describe CNT sensors. It then discusses the expansive applications of CNT-based sensors to multiple areas including environmental monitoring, food and agriculture applications, biological sensors, and national security. The discussion of each analyte focuses on the strategies used to impart selectivity and the molecular interactions between the selector and the analyte. Finally, the review concludes with a brief outlook over future developments in the field of chemical sensors and their prospects for commercialization.
碳纳米管(CNTs)有望推动许多现实世界的技术进步。在这些应用中,它们在用于环境和健康监测的化学传感器中的应用特别有吸引力。然而,基于 CNT 的化学传感器通常缺乏选择性,其传感机制的阐明仍然具有挑战性。
本综述全面描述了导致基于 CNT 的传感器的传感能力的参数,以及基于 CNT 的器件在化学传感中的应用。
本综述首先讨论了基于 CNT 的器件中的传感机制、CNT 的化学功能化方法、传感器的架构、性能参数以及用于描述 CNT 传感器的理论模型。然后,它讨论了基于 CNT 的传感器在多个领域的广泛应用,包括环境监测、食品和农业应用、生物传感器和国家安全。
对每个分析物的讨论都集中在赋予选择性的策略以及选择器和分析物之间的分子相互作用上。最后,综述简要展望了化学传感器领域的未来发展及其商业化前景。