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金属氧化物、导电聚合物和碳基材料对挥发性有机化合物的传感

VOCs Sensing by Metal Oxides, Conductive Polymers, and Carbon-Based Materials.

作者信息

Tomić Milena, Šetka Milena, Vojkůvka Lukaš, Vallejos Stella

机构信息

Institute of Microelectronics of Barcelona (IMB-CNM, CSIC), Campus UAB, 08193 Cerdanyola del Vallès, Barcelona, Spain.

Department of Electronic Engineering, Autonomous University of Barcelona (UAB), Campus UAB, 08193 Cerdanyola del Vallès, Barcelona, Spain.

出版信息

Nanomaterials (Basel). 2021 Feb 22;11(2):552. doi: 10.3390/nano11020552.

Abstract

This review summarizes the recent research efforts and developments in nanomaterials for sensing volatile organic compounds (VOCs). The discussion focuses on key materials such as metal oxides (e.g., ZnO, SnO, TiO WO), conductive polymers (e.g., polypyrrole, polythiophene, poly(3,4-ethylenedioxythiophene)), and carbon-based materials (e.g., graphene, graphene oxide, carbon nanotubes), and their mutual combination due to their representativeness in VOCs sensing. Moreover, it delves into the main characteristics and tuning of these materials to achieve enhanced functionality (sensitivity, selectivity, speed of response, and stability). The usual synthesis methods and their advantages towards their integration with microsystems for practical applications are also remarked on. The literature survey shows the most successful systems include structured morphologies, particularly hierarchical structures at the nanometric scale, with intentionally introduced tunable "decorative impurities" or well-defined interfaces forming bilayer structures. These groups of modified or functionalized structures, in which metal oxides are still the main protagonists either as host or guest elements, have proved improvements in VOCs sensing. The work also identifies the need to explore new hybrid material combinations, as well as the convenience of incorporating other transducing principles further than resistive that allow the exploitation of mixed output concepts (e.g., electric, optic, mechanic).

摘要

本综述总结了用于检测挥发性有机化合物(VOCs)的纳米材料的近期研究成果与进展。讨论聚焦于关键材料,如金属氧化物(例如,ZnO、SnO、TiO、WO)、导电聚合物(例如,聚吡咯、聚噻吩、聚(3,4 - 亚乙基二氧噻吩))和碳基材料(例如,石墨烯、氧化石墨烯、碳纳米管),以及由于它们在VOCs传感中的代表性而进行的相互组合。此外,还深入探讨了这些材料的主要特性以及为实现增强功能(灵敏度、选择性、响应速度和稳定性)而进行的调控。文中还提及了常用的合成方法及其在与微系统集成以用于实际应用方面的优势。文献调查表明,最成功的系统包括结构化形态,特别是纳米尺度的分级结构,其中有意引入了可调节的“装饰性杂质”或形成双层结构的明确界面。这些经过修饰或功能化的结构组,其中金属氧化物作为主体或客体元素仍然是主要角色,已证明在VOCs传感方面有所改进。该工作还指出需要探索新的混合材料组合,以及除了电阻式之外纳入其他传感原理以利用混合输出概念(例如,电、光、机械)的便利性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f37a/7926866/b7a45aefc79e/nanomaterials-11-00552-g001.jpg

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