• 文献标题:   Rational design of 3D N-doped graphene with a holey structure as a bifunctional electrode for sensitive methyl parathion detection and supercapacitors
  • 文献类型:   Article
  • 作  者:   XU SS, WANG PJ, HUANG MR, HONG M, ZHANG Y, SU C, SHI XR
  • 作者关键词:  
  • 出版物名称:   DALTON TRANSACTIONS
  • ISSN:   1477-9226 EI 1477-9234
  • 通讯作者地址:  
  • 被引频次:   0
  • DOI:   10.1039/d2dt02630a EA SEP 2022
  • 出版年:   2022

▎ 摘  要

N-doped graphene with nano-sized holes possesses abundant electrochemically active sites at the exposed edge and an open porous structure, leading to a better electrochemical performance and faster electron and ion transport than the basal planes in graphene. In this study, three-dimensional graphene with a porous structure and abundant doped N (3d-NHG) were synthesized as bifunctional electrodes for methyl parathion (MP) detection and supercapacitors. The roles of N-doping and the holey construction in the electrochemical performance of the 3d-NHG were systematically investigated through a combined theory-experiment strategy. The 3d-NHG-based electrochemical sensor successfully detected methyl parathion in the range of 38 nm-380 mu M with a low detection limit (2.27 nM) and superior sensitivity. Furthermore, the 3d-NHG also demonstrated potential for use in supercapacitors with a specific capacitance of 207 F g(-1) at 1 A g(-1) and excellent rate capability (76% capacitance retention at 10 A g(-1)). Density functional theory calculations revealed that the exposed carbon sites at the edge are the reactive sites for species adsorption. Moreover, the holey structure in 3d-NHG plays a dominating role in electrochemical processes and in the enhanced electrocatalysis. This work provides guidance for the rational design of high-performance bifunctional electrodes for MP detection and supercapacitors by defect engineering.