Ren Mengzhen, Zhang Yujie, Yu Lanlan, Qu Lingbo, Li Zhaohui, Zhang Lin
College of Chemistry, Zhengzhou Key Laboratory of Functional Nanomaterial and Medical Theranostic, Zhengzhou University, Zhengzhou, 450001, PR China.
College of Chemistry, Zhengzhou Key Laboratory of Functional Nanomaterial and Medical Theranostic, Zhengzhou University, Zhengzhou, 450001, PR China.
Talanta. 2023 Apr 1;255:124219. doi: 10.1016/j.talanta.2022.124219. Epub 2022 Dec 26.
Nanozyme with the merit of excellent and adjustable catalytic activity, outstanding stability and low cost is a promising alternative for natural enzymes widely applied in a variety of fields. In the present study, a new two-dimensional cobalt-based MOF nanocomposite designated as MVCM@β-CD was synthesized. Combined with the strategies of increasing the ratio of Co(Ⅲ)/Co(Ⅱ) and modifying with small molecule β-cyclodextrin (β-CD), MVCM@β-CD displayed remarkably enhanced oxidase-mimicking activity, which was attributed to synergistic effect from large surface area of two dimensional Co-MOF nanosheet, numerous exposed active sites, high-proportioned trivalence of cobalt and regulating action of β-cyclodextrin. The addition of aminophenol isomers inhibited the catalytic oxidation process, resulting in different color change of the solution and UV-Vis absorption behaviors, based on which a sensitive ratiometric colorimetry for m-aminophenol (m-Ap) and a simple colorimetric p-aminophenol (p-Ap) detection method were developed with the detection limit of 0.16 μM and 1.01 μM, respectively. This method realized the colorimetric differentiation of aminophenol isomers, which provided a simple, accurate and low-cost approach for visual discrimination without complicated instrument and procedure, especially appropriate for on-site detection.
具有优异且可调节的催化活性、出色的稳定性和低成本优点的纳米酶,是广泛应用于各种领域的天然酶的一种有前途的替代品。在本研究中,合成了一种新型的二维钴基金属有机框架纳米复合材料,命名为MVCM@β-CD。结合提高Co(Ⅲ)/Co(Ⅱ)比例和用小分子β-环糊精(β-CD)修饰的策略,MVCM@β-CD表现出显著增强的模拟氧化酶活性,这归因于二维钴基金属有机框架纳米片的大表面积、大量暴露的活性位点、高比例的钴三价态以及β-环糊精的调节作用的协同效应。氨基酚异构体的加入抑制了催化氧化过程,导致溶液颜色变化和紫外-可见吸收行为不同,基于此建立了一种灵敏的间氨基酚(m-Ap)比率比色法和一种简单的对氨基酚(p-Ap)比色检测方法,检测限分别为0.16 μM和1.01 μM。该方法实现了氨基酚异构体的比色区分,为无需复杂仪器和程序的视觉鉴别提供了一种简单、准确且低成本的方法,特别适用于现场检测。