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一种基于共轭芳基乙炔聚合物的富碳纳米纤维框架用于光阴极酶促生物分析。

A carbon-rich nanofiber framework based on a conjugated arylacetylene polymer for photocathodic enzymatic bioanalysis.

作者信息

Tang Junyan, Liu Xiaoya, Yang Chengwei, Zhang Zhening, Sun Rui, Li Hongmei, Li Caolong, Wang Fei

机构信息

Key Laboratory of Biomedical Functional Materials, School of Science, China Pharmaceutical University Nanjing 211198 P. R. China

Tibetan Medicine Research Institute, Tibetan Traditional Medical College Tibet 850000 P. R. China.

出版信息

RSC Adv. 2019 Dec 23;9(72):42533-42542. doi: 10.1039/c9ra09157b. eCollection 2019 Dec 18.

Abstract

Poly(1,3,5-triethynylbenzene) (PTEB), a newly developed conjugated arylacetylene polymer, was utilized for photoelectrochemical (PEC) enzymatic bioanalysis in this work. The porous nanofiber framework of PTEB film which produced an apparent cathodic photocurrent under visible light illumination was fabricated on an indium tin oxide (ITO) electrode copper-surface mediated interface Glaser polycondensation. As the photocurrent density of the metal-free photocathode displayed a characteristic O dependency, the consumption of dissolved oxygen caused by the modified glucose oxidase (GOx) in biocatalysis induced a depressed photoresponse in the presence of glucose. The fabricated PEC transducer exhibited favorable glucose sensing performances in the linear range of 5 μM to 8 mM and with the detection limit of 1.7 μM; it could also be employed in glucose monitoring in human serum. Moreover, the acetylenic carbon-rich polymer possessed the superior features of being cost-effective in preparation and machinable in device development, which sheds light on the exploration of an advanced PEC sensing platform based on conjugated organic polymers for the bioanalysis of valuable analytes.

摘要

聚(1,3,5 - 三乙炔基苯)(PTEB)是一种新开发的共轭芳基乙炔聚合物,在本工作中用于光电化学(PEC)酶生物分析。通过铜表面介导的界面格拉泽缩聚反应,在氧化铟锡(ITO)电极上制备了PTEB膜的多孔纳米纤维框架,该框架在可见光照射下产生明显的阴极光电流。由于无金属光阴极的光电流密度呈现出典型的O依赖性,生物催化中修饰的葡萄糖氧化酶(GOx)引起的溶解氧消耗在存在葡萄糖的情况下导致光响应降低。所制备的PEC传感器在5 μM至8 mM的线性范围内表现出良好的葡萄糖传感性能,检测限为1.7 μM;它还可用于人血清中的葡萄糖监测。此外,富含炔碳的聚合物具有制备成本效益高和器件开发中可加工的优异特性,这为探索基于共轭有机聚合物的先进PEC传感平台用于有价值分析物的生物分析提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d8d/9076658/cfea1008a1d6/c9ra09157b-s1.jpg

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