School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 401331, China.
School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 401331, China.
J Hazard Mater. 2024 Dec 5;480:136294. doi: 10.1016/j.jhazmat.2024.136294. Epub 2024 Oct 24.
As concerns about environmental pollution grow, the rapid identification and quantification of pollutants have become increasingly vital. In this work, a series of pyrimidine derivatives-Cu enzyme mimics (Cytosine-Cu, Cytidine-Cu, and CMP-Cu) with laccase- and peroxidase-like activity were prepared through the coordination of Cu with different pyrimidine derivatives (PDs). The PDs-Cu enzyme mimics contain high levels of Cu and N - Cu coordination structures, which provide sufficient catalytic sites for the substrates. Compared with natural enzymes and other nanozymes, PDs-Cu demonstrate superior substrate affinity, catalytic efficiency, stability, and resistance to interference. It was found that PDs-Cu enzyme mimics have different catalytic activities towards different phenolic compounds. Therefore, a three-channel colorimetric sensor array (CSA) was successfully developed utilizing PDs-Cu as the sensing elements. The CSA can accurately identify different phenolic compounds and their mixtures in seawater and simulated wastewater. Additionally, a colorimetric method for detecting HO in eye drops was developed, featuring a detection range of 0.1-10.0 μM and a limit of quantification of 0.1 μM. This research not only provides a flexible protocol for regulating the catalytic activity of enzyme mimics, but also provides important inspiration for the development of methods for rapid identification and detection of contaminants in the environmental water.
随着人们对环境污染的担忧加剧,快速识别和定量污染物变得越来越重要。在这项工作中,通过 Cu 与不同嘧啶衍生物(PDs)的配位,制备了一系列具有漆酶和过氧化物酶样活性的嘧啶衍生物-Cu 酶模拟物(胞嘧啶-Cu、胞苷-Cu 和 CMP-Cu)。PDs-Cu 酶模拟物含有高水平的 Cu 和 N-Cu 配位结构,为底物提供了充足的催化位点。与天然酶和其他纳米酶相比,PDs-Cu 表现出更高的底物亲和力、催化效率、稳定性和抗干扰能力。研究发现,PDs-Cu 酶模拟物对不同的酚类化合物具有不同的催化活性。因此,成功地开发了一种基于 PDs-Cu 作为传感元件的三通道比色传感器阵列(CSA)。CSA 可以准确识别海水中和模拟废水中的不同酚类化合物及其混合物。此外,还开发了一种用于检测滴眼剂中 HO 的比色法,其检测范围为 0.1-10.0 μM,检出限为 0.1 μM。这项研究不仅为调控酶模拟物的催化活性提供了一种灵活的方案,而且为快速识别和检测环境水中污染物的方法的发展提供了重要启示。