State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.
State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.
J Hazard Mater. 2023 Jun 5;451:131148. doi: 10.1016/j.jhazmat.2023.131148. Epub 2023 Mar 5.
A colorimetric-electrochemical dual-mode analytical method based on bismuth metal-organic framework nanozyme was developed for label-free and trace/ultra-trace Cr detection. 3D ball-flower shaped bismuth oxide formate (BiOCOOH) was used as the precursor and template to facilely construct the metal-organic framework nanozyme BiO-BDC-NH, which possesses intrinsic peroxidase-mimic activity to effectively catalyze the colorless 3,3',5,5'-tetramethylbenzidine into blue oxidation products in the presence of hydrogen peroxide. Based on Cr to promote the peroxide-mimic activity of BiO-BDC-NH nanozyme, a colorimetric method for Cr detection was developed with the detection limit of 0.44 ng mL. Cr can be electrochemically reduced to Cr that would specifically inhibit the peroxidase-mimic activity of BiO-BDC-NH nanozyme. Thus, the colorimetric system for Cr detection was converted into a low-toxic and signal-off electrochemical sensor. The electrochemical model showed upgraded sensitivity and a lower detection limit of 9.00 pg mL. The dual-model method was developed for selective appropriate sensing instruments in different detection scenarios, which can provide built-in correction for environmental effects, as well as the development and utilization of dual-signal sensing platforms for trace to ultra-trace Cr rapid assay.
基于铋基金属有机框架纳米酶的比色-电化学双模分析方法被开发用于无标记和痕量/超痕量 Cr 的检测。3D 球状花形草酸氧铋 (BiOCOOH) 被用作前体和模板,以简便地构建具有固有过氧化物酶模拟活性的金属有机框架纳米酶 BiO-BDC-NH,该纳米酶能在过氧化氢存在下有效催化无色 3,3',5,5'-四甲基联苯胺生成蓝色氧化产物。基于 Cr 促进 BiO-BDC-NH 纳米酶的过氧化物酶模拟活性,开发了一种用于 Cr 检测的比色法,其检测限为 0.44ngmL。Cr 可被电化学还原为 Cr,这将特异性抑制 BiO-BDC-NH 纳米酶的过氧化物酶模拟活性。因此,用于 Cr 检测的比色体系被转化为低毒和信号关闭的电化学传感器。电化学模型显示出更高的灵敏度和更低的检测限 9.00pgmL。双模型方法用于在不同的检测场景中选择适当的传感仪器,该方法可为环境效应提供内置校正,并为痕量至超痕量 Cr 的快速分析开发和利用双信号传感平台。