School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu 273165, China.
Faculty of Materials Metallurgy and Chemistry, Jiangxi University of Science and Technology, Ganzhou 341000, China.
J Hazard Mater. 2021 May 5;409:125019. doi: 10.1016/j.jhazmat.2020.125019. Epub 2021 Jan 2.
To enlarge the perspective of nanozyme, 2-dimensional CoO stabilizing Rh nano composite (2D CoO@Rh NC) was identified and developed first by one-pot surfactant-aided oxido-reduction. By virtue of the synergetic-reinforcing oxidase activity between 2D CoO substrate and Rh nano particles, the obtained 2D CoO@Rh NC could catalyze the oxidation of chromogenic substrate 3,3',5,5,'-tetramethylbenzidine (TMB) to blue oxTMB with quite a low Michaelis-Menten constant (K) of 0.018 mM and a quick v of 6.45 × 10 M s, expressing superior oxidase-like catalysis with a wide temperature range from 20 to 60 °C. Importantly, either bioactive urea or toxic p-aminophenol (p-Ap) could exclusively alter the existed state of oxTMB with differentiable color changes. Under the optimized conditions, 2D CoO@Rh NC was successfully applied for ratiometric colorimetric sensing urea and p-Ap in environmental water, soil and urine samples with low detection limits (1.1 μM for urea and 0.68 μM for p-Ap) and satisfactory recoveries (96.0-105.8%). The synergetic enhanced oxidase-like activity of 2D CoO@Rh NC and the different reaction mechanisms of the 2D CoO@Rh NC-TMB system to urea and p-Ap were investigated. Not only does the work provide an efficient way for sensing organic pollution of p-Ap, it will offer an efficient potential for diagnosing urea-related diseases on clinical medical testing in future.
为了扩大纳米酶的研究视角,首次通过一锅表面活性剂辅助的氧化还原法鉴定并开发了二维 CoO 稳定的 Rh 纳米复合材料(2D CoO@Rh NC)。得益于 2D CoO 基底和 Rh 纳米颗粒之间协同增强的氧化酶活性,所获得的 2D CoO@Rh NC 可以催化显色底物 3,3',5,5,'-四甲基联苯胺(TMB)氧化生成蓝色产物 oxTMB,米氏常数(K)低至 0.018 mM,反应速率(v)快至 6.45×10 M s,在 20 至 60°C 的较宽温度范围内表现出优异的类氧化酶催化性能。重要的是,无论是生物活性尿素还是有毒对氨基酚(p-Ap),都可以通过可区分的颜色变化来改变 oxTMB 的存在状态。在优化条件下,2D CoO@Rh NC 成功应用于环境水样、土壤和尿液样品中尿素和 p-Ap 的比率比色传感,检测限低(尿素为 1.1 μM,p-Ap 为 0.68 μM),回收率令人满意(96.0-105.8%)。研究了 2D CoO@Rh NC 的协同增强氧化酶样活性以及 2D CoO@Rh NC-TMB 体系对尿素和 p-Ap 的不同反应机制。这项工作不仅为检测 p-Ap 的有机污染提供了一种有效的方法,而且将来也为临床医学检测中诊断与尿素相关的疾病提供了一种有效的潜在方法。