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Isolated Cobalt Atoms On N-Doped Carbon As Nanozymes For Hydrogen Peroxide And Dopamine Detection

ACS APPLIED NANO MATERIALS(2021)

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摘要
Single-atom catalysts are becoming a hot research topic owing to their unique characteristics of maximum specific activity and atomic utilization. Herein, atomically dispersed Co on a N-doped carbon matrix with an enzyme-like M-N-x structure has been developed as a bifunctional biosensor to detect hydrogen peroxide (H2O2) and dopamine (DA). It features 100% atomic utilization, high electro-chemical activity and selectivity, and strong stability in various pH environments. The abundance of Co-N-x sites can be increased via regulating calcination temperature, and as a result, the sensing performance is significantly improved. This platform could selectively catalyze the oxidation of DA and the reduction of H2O2 at different holding potentials. The optimal Co-N-C-800 affords high sensitivity (H2O2: 943.9 mu A mM(-1) cm(-2) and DA: 979.6 mu A mM(-1) cm(-2)), low detection limit (H2O2: 0.13 mu M and DA: 0.04 mu M), high selectivity, and robust stability. At the same time, H2O2 and DA released by PC12 can be detected, which proved the feasibility of the enzyme-like single-atomic materials in electrochemical biosensing.
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关键词
electrochemical biosensor, nanozymes, Co-N-C, H2O2 detection, DA detection
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