Panigrahi Pravas Kumar, Chandu Basavaiah, Puvvada Nagaprasad
Department of Basic Science, Government College of Engineering, Kalahandi, Odisha 766003, India.
Department of Nanotechnology, Acharya Nagarjuna University, Guntur, Andhra Pradesh 522510, India.
ACS Omega. 2024 Jan 10;9(3):3092-3122. doi: 10.1021/acsomega.3c06533. eCollection 2024 Jan 23.
Many different industries, including the pharmaceutical, medical engineering, clinical diagnostic, public safety, and food monitoring industries, use gas sensors. The inherent qualities of nanomaterials, such as their capacity to chemically or physically adsorb gas, and their great ratio of surface to volume make them excellent candidates for use in gas sensing technology. Additionally, the nanomaterial-based gas sensors have excellent selectivity, reproducibility, durability, and cost-effectiveness. This Review article offers a summary of the research on gas sensor devices based on nanomaterials of various sizes. The numerous nanomaterial-based gas sensors, their manufacturing procedures and sensing mechanisms, and most recent advancements are all covered in detail. In addition, evaluations and comparisons of the key characteristics of gas sensing systems made from various dimensional nanomaterials were done.
包括制药、医疗工程、临床诊断、公共安全和食品监测等在内的许多不同行业都使用气体传感器。纳米材料的固有特性,如它们化学或物理吸附气体的能力以及高比表面积,使其成为气体传感技术的理想候选材料。此外,基于纳米材料的气体传感器具有出色的选择性、可重复性、耐久性和成本效益。这篇综述文章总结了基于各种尺寸纳米材料的气体传感器装置的研究。详细介绍了众多基于纳米材料的气体传感器、它们的制造工艺和传感机制以及最新进展。此外,还对由不同维度纳米材料制成的气体传感系统的关键特性进行了评估和比较。