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铁单原子锚定的 N 掺杂碳作为一种“漆酶样”纳米酶,用于酚类污染物和肾上腺素的降解和检测。

Iron single-atom anchored N-doped carbon as a 'laccase-like' nanozyme for the degradation and detection of phenolic pollutants and adrenaline.

机构信息

School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210023, PR China.

School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210023, PR China.

出版信息

J Hazard Mater. 2022 Mar 5;425:127763. doi: 10.1016/j.jhazmat.2021.127763. Epub 2021 Nov 14.

Abstract

To solve the inherent defects of laccase, the first iron single-atom anchored N-doped carbon material (Fe@CN-20) as a laccase mimic was disclosed. The FeN structure of this material can well mimic the catalytic activity of laccase. Although Fe@CN-20 has a lower metal content (2.9 wt%) than any previously reported laccase mimics, it exhibits kinetic constants comparable to those of laccase, as its K (Michaelis constant) and V (maximum rate) are 0.070 mM and 2.25 µM/min respectively, which are similar to those of laccase (0.078 mM, 2.49 µM/min). This catalyst displays excellent stability even under extreme pH (2-9), high temperature (100 °C), strong ionic strength (500 mM of NaCl), high ethanol concentration (volume ratio 40%) and long storage time (2 months). Additionally, it can be reused for at least 7 times with only a slight loss in activity. Therefore, this material has a much lower price and better stability and recyclability than laccase, which has been applied in the detection and degradation of a series of phenolic compounds. In the detection of adrenaline, Fe@CN-20 achieved a detection limit of 1.3 µM, indicating it is more sensitive than laccase (3.9 µM).

摘要

为了解决漆酶固有的缺陷,首次公开了一种铁单原子锚定的 N 掺杂碳材料(Fe@CN-20)作为漆酶模拟物。该材料的 FeN 结构可以很好地模拟漆酶的催化活性。尽管 Fe@CN-20 的金属含量(2.9wt%)低于以往报道的任何漆酶模拟物,但它表现出与漆酶相当的动力学常数,因为其 K(米氏常数)和 V(最大速率)分别为 0.070mM 和 2.25µM/min,与漆酶(0.078mM,2.49µM/min)相似。该催化剂在极端 pH(2-9)、高温(100°C)、高离子强度(500mM NaCl)、高乙醇浓度(体积比 40%)和长时间储存(2 个月)下仍表现出优异的稳定性。此外,它可以重复使用至少 7 次,活性仅略有下降。因此,与漆酶相比,该材料具有更低的价格、更好的稳定性和可回收性,已应用于一系列酚类化合物的检测和降解。在检测肾上腺素时,Fe@CN-20 的检测限达到 1.3µM,表明其比漆酶(3.9µM)更灵敏。

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