Department of Metallurgical and Materials Engineering, Indian Institute of Technology Kharagpur, Kharagpur 721302, West Bengal, India.
Department of Physics, National Institute of Technology, Warangal, 506004, India.
ACS Sens. 2022 Aug 26;7(8):2132-2163. doi: 10.1021/acssensors.2c01046. Epub 2022 Aug 16.
Gas sensors, capable of detecting and monitoring trace amounts of gas molecules or volatile organic compounds (VOCs), are in great demand for numerous applications including diagnosing diseases through breath analysis, environmental and personal safety, food and agriculture, and other fields. The continuous emergence of new materials is one of the driving forces for the development of gas sensors. Recently, 2D materials have been gaining huge attention for gas sensing applications, owing to their superior electrical, optical, and mechanical characteristics. Especially for 2D MXenes, high specific area and their rich surface functionalities with tunable electronic structure make them compelling for sensing applications. This Review discusses the latest advancements in the 2D MXenes for gas sensing applications. It starts by briefly explaining the family of MXenes, their synthesis methods, and delamination procedures. Subsequently, it outlines the properties of MXenes. Then it describes the theoretical and experimental aspects of the MXenes-based gas sensors. Discussion is also extended to the relation between sensing performance and the structure, electronic properties, and surface chemistry. Moreover, it highlights the promising potential of these materials in the current gas sensing applications and finally it concludes with the limitations, challenges, and future prospects of 2D MXenes in gas sensing applications.
气体传感器能够检测和监测痕量气体分子或挥发性有机化合物 (VOCs),因此在许多应用中都有很大的需求,包括通过呼吸分析诊断疾病、环境和人身安全、食品和农业等领域。新材料的不断涌现是气体传感器发展的动力之一。最近,二维 (2D) 材料因其优异的电学、光学和机械特性,在气体传感应用中引起了极大的关注。特别是对于二维 MXenes,其高比表面积和丰富的表面功能可调谐的电子结构使它们在传感应用中具有吸引力。本综述讨论了 2D MXenes 在气体传感应用方面的最新进展。首先简要介绍了 MXenes 家族、它们的合成方法和分层过程。随后,概述了 MXenes 的性质。然后描述了基于 MXenes 的气体传感器的理论和实验方面。讨论还扩展到了传感性能与结构、电子性质和表面化学之间的关系。此外,还强调了这些材料在当前气体传感应用中的广阔应用前景,最后总结了二维 MXenes 在气体传感应用中的局限性、挑战和未来展望。