Anhui Province Key Laboratory of Advanced Catalytic Materials and Reaction Engineering, School of Chemistry and Chemical Engineering, Hefei University of Technology, Hefei, 230009, Anhui, China.
Anhui Province Key Laboratory of Green Manufacturing of Power Battery, Tianneng Battery Group (Anhui Company), Jieshou, 236500, Anhui, China.
Anal Bioanal Chem. 2021 May;413(13):3541-3550. doi: 10.1007/s00216-021-03305-8. Epub 2021 Mar 29.
Chemiluminescence (CL) reagent luminol was loaded into the porous structure of cobalt-imidazole metal-organic framework (MOF) ZIF-67 to obtain luminol-functionalized ZIF-67 (luminol@ZIF-67) with CL property. The morphology, composition, CL property, and CL mechanism of luminol@ZIF-67 were carefully investigated. The obtained luminol@ZIF-67 exhibited strong, stable, and visible CL emission that reacted with HO, attributed to the strong catalytic effect of ZIF-67 combined with the shortened diffusion distance between luminol and the catalytic center. The CL intensity of luminol@ZIF-67 was more than 550 times higher than that of luminol. Catechol can effectively quench the CL emission of luminol@ZIF-67 that reacted with HO. Then, a simple paper-based CL imaging detection method was developed for the detection of catechol by using a smartphone as a portable detector. The linear calibration curve of the developed CL assay for catechol ranged from 5 to 100 mg/L with detection limit of 1.1 mg/L (S/N = 3δ). The strong CL emission of luminol@ZIF-67 combined with the effective quench ability of catechol guaranteed high sensitivity of the detection method. The practical application ability of the developed CL assay was tested by the determination of catechol in tea and tap water samples, resulting in acceptable results. This work provides an effective paper-based CL detection method for catechol and enriches the species of the chemiluminescent MOF material.
将化学发光 (CL) 试剂鲁米诺载入钴-咪唑金属有机骨架 (MOF) ZIF-67 的多孔结构中,得到具有 CL 性质的鲁米诺功能化 ZIF-67 (鲁米诺@ZIF-67)。仔细研究了鲁米诺@ZIF-67 的形态、组成、CL 性质和 CL 机制。所得的鲁米诺@ZIF-67 表现出强、稳定和可见的 CL 发射,与 HO 反应归因于 ZIF-67 的强催化作用与鲁米诺和催化中心之间缩短的扩散距离相结合。鲁米诺@ZIF-67 的 CL 强度比鲁米诺高 550 多倍。儿茶酚可有效猝灭与 HO 反应的鲁米诺@ZIF-67 的 CL 发射。然后,通过使用智能手机作为便携式检测器,开发了一种简单的基于纸张的 CL 成像检测方法用于检测儿茶酚。所开发的用于检测儿茶酚的 CL 分析的线性校准曲线范围为 5 至 100 mg/L,检测限为 1.1 mg/L(S/N = 3δ)。鲁米诺@ZIF-67 的强 CL 发射与儿茶酚的有效猝灭能力相结合,保证了检测方法的高灵敏度。通过测定茶和自来水中的儿茶酚来测试所开发的 CL 分析的实际应用能力,结果令人满意。这项工作为儿茶酚提供了一种有效的基于纸张的 CL 检测方法,并丰富了化学发光 MOF 材料的种类。