生物传感器
材料科学
纳米技术
平版印刷术
多孔性
电化学
制作
水溶液中的金属离子
金属有机骨架
图层(电子)
沉积(地质)
化学气相沉积
薄膜
金属
电极
光电子学
化学
有机化学
吸附
复合材料
物理化学
冶金
医学
古生物学
替代医学
病理
沉积物
生物
作者
Jinlong Wang,Ji Tan,Zhe Zhao,Jiayuan Huang,Junjie Zhou,Xinyi Ke,Zihan Lu,Gaoshan Huang,Huangqiu Zhu,Xuanyong Liu,Yongfeng Mei
标识
DOI:10.1016/j.bios.2024.116433
摘要
The limitations of solvent residues, unmanageable film growth regions, and substandard performance impede the extensive utilization of metal-organic framework (MOF) films for biosensing devices. Here, we report a strategy for ion design in gas-phase synthesized flexible MOF porous film to attain universal regulation of biosensing performances. The key fabrication process involves atomic layer deposition of induced layer coupled with lithography-assisted patterning and area-selective gas-phase synthesis of MOF film within a chemical vapor deposition system. Sensing platforms are subsequently formed to achieve specific detection of H2O2, dopamine, and glucose molecules by respectively implanting Co, Fe, and Ni ions into the network structure of MOF films. Furthermore, we showcase a practical device constructed from Co ions-implanted ZIF-4 film to accomplish real-time surveillance of H2O2 concentration at mouse wound. This study specifically elucidates the electronic structure and coordination mode of ion design in MOF film, and the obtained knowledge aids in tuning the electrochemical property of MOF film for advantageous sensing devices.
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