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基于菲咯啉功能化给体-受体共价有机框架的光响应纳米酶用于异烟肼的可视化比色检测

Phenanthroline-functionalized donor-acceptor covalent organic frameworks as photo-responsive nanozymes for visual colorimetric detection of isoniazid.

机构信息

College of Chemical Engineering and Materials, Quanzhou Normal University, Quanzhou, Fujian, 362000, China.

Hebi Polytechnic, Hebi, Henan 458000, China.

出版信息

J Mater Chem B. 2024 May 8;12(18):4502-4508. doi: 10.1039/d3tb02939e.

Abstract

Development of metal-free nanozymes has raised concern for their extensive applications in photocatalysis and sensing fields. As novel metal-free nanomaterials, covalent organic frameworks (COFs) have engendered intense interest in the construction of nanozymes due to their structural controllability and molecular functionality. The formation of the molecular arrangement by embedding orderly donor-acceptors (D-A) linked in the framework topology to modulate material properties for highly efficient enzyme mimicking activity is of importance but challenging. Here, a strong D-A type of COF was designed and synthesized by integrating electron donor units (pyrene) and electron acceptor units (phenanthroline), named Py-PD COF. Using experiments and theoretical calculations, the introduction of a phenanthroline ring endowed the Py-PD COF with a narrowed band gap, and efficient charge transfer and separation. Further, the Py-PD COF exhibited a superior light-responsive oxidase-mimicking characteristic under visible light irradiation, which could catalyze the oxidation of 3,3',5,5-tetramethylbenzidine (TMB) and give the corresponding evolution of color. The nanoenzymatic activity of the Py-PD COF was light-regulated, which offers a fascinating advantage because of its high efficiency and spatial controllability. Based on previously mentioned characteristics, an "on-off" sensing platform for the colorimetric analysis of isoniazid (INH) could be constructed with a good linear relationship (2-100 μM) and a low limit of detection (1.26 μM). This research shows that not only is Py-PD COF an environmentally friendly compound for the colorimetric detection of INH, but it is also capable of providing the interesting D-A type COF-based material for designing an excellent nanozyme.

摘要

无金属纳米酶的发展引起了人们对其在光催化和传感领域广泛应用的关注。作为新型无金属纳米材料,共价有机框架(COFs)由于其结构可控性和分子功能性,在构建纳米酶方面引起了极大的兴趣。通过在框架拓扑结构中嵌入有序供体-受体(D-A)键来调节材料性质以实现高效酶模拟活性的分子排列的形成非常重要,但具有挑战性。在这里,通过整合电子给体单元(芘)和电子受体单元(菲咯啉),设计并合成了一种强 D-A 型 COF,命名为 Py-PD COF。通过实验和理论计算,引入菲咯啉环赋予了 Py-PD COF 更窄的带隙、有效的电荷转移和分离。此外,Py-PD COF 在可见光照射下表现出优异的光响应氧化酶模拟特性,可催化 3,3',5,5-四甲基联苯胺(TMB)的氧化,并产生相应的颜色变化。Py-PD COF 的纳米酶活性可以通过光进行调控,这提供了一个迷人的优势,因为它具有高效率和空间可控性。基于上述特性,可以构建一种用于异烟肼(INH)比色分析的“开-关”传感平台,具有良好的线性关系(2-100 μM)和低检测限(1.26 μM)。这项研究表明,Py-PD COF 不仅是一种用于 INH 比色检测的环保化合物,而且还能够为设计优秀的纳米酶提供有趣的 D-A 型 COF 基材料。

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