Hunan Key Laboratory of Biomedical Nanomaterials and Devices, College of Life Sciences and Chemistry, Hunan University of Technology, Zhuzhou, 412007, China.
College of Materials Science and Engineering, Changsha University of Science and Technology, Changsha, 410114, China.
Anal Chim Acta. 2021 Jul 25;1170:338480. doi: 10.1016/j.aca.2021.338480. Epub 2021 Apr 8.
Since the discovery of liquid-phase-exfoliated black phosphorus (BP) as a field-effect transistor in 2014, BP, with its 2D layered structure, has attracted significant attention, owing to its anisotropic electroconductivity, tunable direct bandgap, extraordinary surface activity, moderate switching ratio, high hole mobility, good biocompatibility, and biodegradability. Several pioneering research efforts have explored the application of BP in different types of electrochemical sensors. This review summarizes the latest synthesis methods, protection strategies, and electrochemical sensing applications of BP and its derivatives. The typical synthesis methods for BP-based crystals, nanosheets, and quantum dots are discussed in detail; the degradation of BP under ambient conditions is introduced; and state-of-the-art protection methodologies for enhancing BP stability are explored. Various electrochemical sensing applications, including chemically modified electrodes, electrochemiluminescence sensors, enzyme electrodes, electrochemical aptasensors, electrochemical immunosensors, and ion-selective electrodes are discussed in detail, along with the mechanisms of BP functionalization, sensing strategies, and sensing properties. Finally, the major challenges in this field are outlined and future research avenues for BP-based electrochemical sensors are highlighted.
自 2014 年发现液相剥离黑磷(BP)作为场效应晶体管以来,BP 以其二维层状结构、各向异性电导率、可调的直接带隙、非凡的表面活性、适中的开关比、高空穴迁移率、良好的生物相容性和可生物降解性而引起了人们的极大关注。一些开创性的研究工作已经探索了 BP 在不同类型电化学传感器中的应用。本综述总结了 BP 及其衍生物的最新合成方法、保护策略和电化学传感应用。详细讨论了 BP 基晶体、纳米片和量子点的典型合成方法;介绍了 BP 在环境条件下的降解;并探讨了提高 BP 稳定性的最新保护方法。详细讨论了各种电化学传感应用,包括化学修饰电极、电致化学发光传感器、酶电极、电化学适体传感器、电化学免疫传感器和离子选择性电极,并探讨了 BP 功能化、传感策略和传感特性的机制。最后,概述了该领域的主要挑战,并强调了基于 BP 的电化学传感器的未来研究方向。