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Size-controllable Fe-N/C single-atom nanozyme with exceptional oxidase-like activity for sensitive detection of alkaline phosphatase

机译:具有特殊氧化酶样活性的尺寸可控的Fe-N / C单原子纳米碱基,用于敏感检测碱性磷酸酶

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摘要

Nanozymes become currently a frontier of chemical research. However, exploiting a novel nanozyme with high activity, good stability and reproducibility is challenging. Here, size-controllable Fe-N/C nanozymes containing exclusive single Fe atoms coordinated Fe-N_x sites were succesfully prepared through a facile pyrolysis of size controllable Fe-Zn ZIFs precursors. The Fe-N/C nanozymes exhibit exceptional high oxidase-mimicking activity able to catalyze oxidation of colorless 3,3',5,5'-tetramethylbenzidine (TMB) by dissolved oxygen to generate blue product. Their catalytic activities can be regulated by modulating the molar ratios of methanol to metal salts (e.g., Fe and Zn) through which the size controllable Fe-Zn ZIFs precursors are obtained. Upon introduction of ascorbic acid (AA) into Fe-N/C/TMB system, complete inhibition of TMB oxidation was observed, resulting in significant decline in absorbance with a clear color change. In the presence of alkaline phosphatase (ALP), ascorbic acid 2-phosphate (AAP) is hydrolyzed to produce AA. When coupled with AAP, a novel colorimetric biosensor platform was fabricated for ALP activity screening in the range of 0.05 U/L-100 U/L (four orders of magnitude) with an ultra-low limit of detection of 0.02 U/L. The work provides a promising strategy to rationally design the transition metal-N/C single-atom nanozyme with high oxidase-like activity.
机译:纳佐斯目前成为化学研究的前沿。然而,利用高活性的新型纳佐,良好的稳定性和再现性具有挑战性。这里,通过尺寸可控Fe-Zn Zifs前体的容纳热解成功制备含有独占单氧化镁的含量独占单氧化镁的Fe-N_X位点的尺寸可控的Fe-N / C纳米氧化。 Fe-N / C纳佐中的卓越的高氧化酶模拟活性能够通过溶解氧催化无色3,3',5,5'-四甲基苯胺(TMB)的氧化以产生蓝产物。通过调节甲醇至金属盐(例如,Fe和Zn)的摩尔比来调节它们的催化活性,通过该甲醇(例如,Fe和Zn)通过该摩尔盐,可以通过该溶液获得尺寸可控的Fe-Zn Zifs前体。在将抗坏血酸(AA)引入Fe-N / C / TMB系统后,观察到对TMB氧化的完全抑制,导致吸光度显着下降,色彩变化明显。在存在碱性磷酸酶(ALP)的情况下,水解抗坏血酸2-磷酸(AAP)以产生AA。当与AAP耦合时,在0.05 U / L-100 U / L(四个级)范围内的ALP活性筛选的新型比色生物传感器平台具有0.02u / l的超低检测限。该工作提供了有希望的策略,可理性地设计具有高氧化酶样活性的过渡金属-N / C单原子纳米甲基酶。

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  • 来源
    《Sensors and Actuators》 |2020年第2期|127511.1-127511.9|共9页
  • 作者单位

    The Key Laboratory of Luminescence and Real-time Analytical Chemistry Ministry of Education College of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

    The Key Laboratory of Luminescence and Real-time Analytical Chemistry Ministry of Education College of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

    Wuxi Branch of Jiangsu Province Special Equipment Safety Supervision and Inspection Institute Wuxi 214174 China;

    The Key Laboratory of Luminescence and Real-time Analytical Chemistry Ministry of Education College of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

    Key Laboratory of Eco-enviroranents in Three Gorges Reservoir Region (Ministry of Education) College of Environment and Ecology Chongqing University Shapingba Chongqing 400045 China;

    Key Laboratory of Eco-enviroranents in Three Gorges Reservoir Region (Ministry of Education) College of Environment and Ecology Chongqing University Shapingba Chongqing 400045 China;

    The Key Laboratory of Luminescence and Real-time Analytical Chemistry Ministry of Education College of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Single-atom nanozyme; Oxidase nanozymes; Fe-N/C catalysts; Metal-organic framework; Alkaline phosphatese;

    机译:单颗粒纳佐;氧化酶纳佐;Fe-N / C催化剂;金属有机框架;碱性磷酸酶;

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