化学
检出限
电化学
石墨烯
分子
纳米技术
过氧化氢
选择性
催化作用
电极
物理化学
有机化学
色谱法
材料科学
作者
Yiyi Liu,Peng Zhao,Yi Liang,Yuanyuan Chen,Jiazhu Pu,Junqi Wu,Yi-Lin Yang,Yi Ma,Zhen Huang,Huibo Luo,Danqun Huo,Changjun Hou
出处
期刊:Talanta
[Elsevier]
日期:2022-12-05
卷期号:254: 124171-124171
被引量:23
标识
DOI:10.1016/j.talanta.2022.124171
摘要
A properly designed sensing interface is crucial for the accurate and sensitive detection of biologically active molecules. Single-atom nanozymes from transition metal and nitrogen-doped carbon materials (M-N-C) have caught attention owing to their large surface area and strong bionic enzyme activity. Herein, a three-dimensional layered electrochemical electrode consisting of a Co-N-C nanoenzyme embedded in a reduced graphene oxide aerogel was prepared for the detection of hydrogen peroxide (H2O2), dopamine (DA) and uric acid (UA). Due to its unique three-dimensional layered structure, rGA has excellent electrical conductivity and high material loading and is used to enhance the electrocatalytic performance of Co-N-C. The combination of single-atom nanozymes and electrochemical detection shows unique advantages in catalytic activity and selectivity. The limit of detection and detection range are 0.74 μM and 3-2991 μM respectively for H2O2. Furthermore, it has been successfully implemented for the in-situ detection of H2O2 in living cells. In addition, their simultaneous detection is also realized by the sensors for DA and UA. And it can accurately capture the signal of UA and DA in the urine. Meanwhile, the electrode displays satisfactory stability and repeatability. Therefore, this paper provides a new detection strategy for a variety of bioactive molecules, showing great potential in cell biology, pathophysiology and diagnostics.
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