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