Hu Min, He Hu, Xiao Fei, Liu Chen
Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science & Technology, Wuhan 430074, China.
Technology Inspection Center of Sheng Li Oil Filed, Dongying 257000, China.
Nanomaterials (Basel). 2023 Jul 14;13(14):2069. doi: 10.3390/nano13142069.
The development of nanohybrid with high electrocatalytic activity is of great significance for electrochemical sensing applications. In this work, we develop a novel and facile method to prepare a high-performance flexible nanohybrid paper electrode, based on nitrogen-doped carbon (NC) wrapped Bi nanoparticles (Bi-NPs) assembly derived from Bi-MOF, which are decorated on a flexible and freestanding graphene paper (GP) electrode. The as-obtained Bi-NPs encapsulated by an NC layer are uniform, and the active sites are increased by introducing a nitrogen source while preparing Bi-MOF. Owing to the synergistic effect between the high conductivity of GP electrode and the highly efficient electrocatalytic activity of Bi-NPs, the NC wrapped Bi-NPs (Bi-NPs@NC) modified GP (Bi-NPs@NC/GP) electrode possesses high electrochemically active area, rapid electron-transfer capability, and good electrochemical stability. To demonstrate its outstanding functionality, the Bi-NPs@NC/GP electrode has been integrated into a handheld electrochemical sensor for detecting heavy metal ions. The result shows that Zn, Cd, and Pb can be detected with extremely low detection limits, wide linear range, high sensitivity, as well as good selectivity. Furthermore, it demonstrates outstanding electrochemical sensing performance in the simultaneous detection of Zn, Cd, and Pb. Finally, the proposed electrochemical sensor has achieved excellent repeatability, reproducibility, stability, and reliability in measuring real water samples, which will have great potential in advanced applications in environmental systems.
开发具有高电催化活性的纳米杂化物对于电化学传感应用具有重要意义。在这项工作中,我们开发了一种新颖且简便的方法来制备高性能柔性纳米杂化纸电极,该电极基于由Bi-MOF衍生的氮掺杂碳(NC)包裹的铋纳米颗粒(Bi-NPs)组装体,这些组装体装饰在柔性自立式石墨烯纸(GP)电极上。所获得的被NC层包裹的Bi-NPs均匀,并且在制备Bi-MOF时通过引入氮源增加了活性位点。由于GP电极的高导电性与Bi-NPs的高效电催化活性之间的协同作用,NC包裹的Bi-NPs(Bi-NPs@NC)修饰的GP(Bi-NPs@NC/GP)电极具有高电化学活性面积、快速的电子转移能力和良好的电化学稳定性。为了证明其出色的功能,Bi-NPs@NC/GP电极已被集成到用于检测重金属离子的手持式电化学传感器中。结果表明,Zn、Cd和Pb能够以极低的检测限、宽线性范围、高灵敏度以及良好的选择性被检测到。此外,它在同时检测Zn、Cd和Pb方面表现出出色的电化学传感性能。最后,所提出的电化学传感器在测量实际水样中实现了出色的重复性、再现性、稳定性和可靠性,这在环境系统的先进应用中将具有巨大潜力。