Solangi Nadeem Hussain, Mubarak Nabisab Mujawar, Karri Rama Rao, Mazari Shaukat Ali, Jatoi Abdul Sattar
Department of Chemical Engineering, Dawood University of Engineering and Technology, Karachi, 74800, Pakistan.
Petroleum and Chemical Engineering, Faculty of Engineering, Universiti Teknologi Brunei, Bandar Seri Begawan, BE1410, Brunei Darussalam.
Environ Res. 2023 Apr 1;222:115279. doi: 10.1016/j.envres.2023.115279. Epub 2023 Jan 24.
Over the last few years, electroanalysis has made significant advancements, particularly in developing electrochemical sensors. Electrochemical sensors generally include emerging Photoelectrochemical and Electrochemiluminescence sensors, which combine optical techniques and traditional electrochemical bio/non-biosensors. Numerous EC-detecting methods have also been designed for commercial applications to detect biological and non-biological markers for various diseases. Analytical applications have recently focused significantly on one of the novel nanomaterials, the MXene. This material is being extensively investigated for applications in electrochemical sensors due to its unique mechanical, electronic, optical, active functional groups and thermal characteristics. This study extensively discusses the salient features of MXene-based electrochemical sensors, photoelectrochemical sensors, enzyme-based biosensors, immunosensors, aptasensors, electrochemiluminescence sensors, and electrochemical non-biosensors. In addition, their performance in detecting various substances and contaminants is thoroughly discussed. Furthermore, the challenges and prospects the MXene-based electrochemical sensors are elaborated.
在过去几年中,电分析取得了重大进展,特别是在开发电化学传感器方面。电化学传感器通常包括新兴的光电化学和电化学发光传感器,它们将光学技术与传统的电化学生物/非生物传感器相结合。还设计了许多用于商业应用的电化学检测方法,以检测各种疾病的生物和非生物标志物。分析应用最近显著地集中在一种新型纳米材料——MXene上。由于其独特的机械、电子、光学、活性官能团和热特性,这种材料正在被广泛研究用于电化学传感器。本研究广泛讨论了基于MXene的电化学传感器、光电化学传感器、酶基生物传感器、免疫传感器、适体传感器、电化学发光传感器和电化学非生物传感器的显著特征。此外,还深入讨论了它们在检测各种物质和污染物方面的性能。此外,还阐述了基于MXene的电化学传感器面临的挑战和前景。