School of Materials Science and Engineering, University of Jinan, Jinan 250022, China.
Shandong Academy of Preventive Medicine, Shandong Center for Disease Control and Prevention, Jinan 250014, China.
Biosensors (Basel). 2023 Jul 20;13(7):748. doi: 10.3390/bios13070748.
Transition metal-N-doped carbon has been demonstrated to mimic natural enzyme activity; in this study, cobalt-nitrogen co-doped carbon (Co-N-C) nanomaterial was developed, and it could be an oxidase mimic. Firstly, Co-N-C with oxidase-like activity boosts the chromogenic reaction of 3,3',5,5'-tetramethylbenzidine (TMB) to produce the oxidized TMB (oxTMB). And the aromatic primary amino group of oxTMB reacts with nitrite (NO) to form diazo groups. Based on this background, we developed a cascade system of a Co-N-C-catalyzed oxidation reaction and a diazotization reaction for nitrite determination. The low detection limit (0.039 μM) indicates that Co-N-C is superior compared with the vast majority of previously reported nitrite assays. This study not only provides a novel nanozyme with sufficiently dispersed active sites, but it also further applies it to the determination of nitrite, which is expected to expand the application of nanozymes in colorimetric analysis.
过渡金属-N 掺杂碳已被证明可模拟天然酶活性;在这项研究中,开发了钴-氮共掺杂碳(Co-N-C)纳米材料,它可以作为氧化酶模拟物。首先,具有类似氧化酶活性的 Co-N-C 促进了 3,3',5,5'-四甲基联苯胺(TMB)的显色反应,生成氧化的 TMB(oxTMB)。然后,oxTMB 的芳族仲氨基与亚硝酸盐(NO)反应形成重氮基团。基于此背景,我们开发了一种 Co-N-C 催化氧化反应和重氮化反应的级联系统,用于亚硝酸盐的测定。低检测限(0.039 μM)表明,与之前报道的绝大多数亚硝酸盐测定方法相比,Co-N-C 具有优越性。本研究不仅提供了一种具有足够分散活性位点的新型纳米酶,而且还将其进一步应用于亚硝酸盐的测定,有望扩展纳米酶在比色分析中的应用。