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基于异三(酞菁合)铕三层夹心配合物和酪氨酸酶的自组装层的伏安生物传感器用于儿茶酚检测。

A voltammetry biosensor based on self-assembled layers of a heteroleptic tris(phthalocyaninato) europium triple-decker complex and tyrosinase for catechol detection.

机构信息

School of Materials Science and Engineering, Institute of New Energy, China University of Petroleum (East China), Qingdao 266580, China.

Huaneng Weihai Power Generation Co., Ltd., Weihai, 264205, China.

出版信息

Enzyme Microb Technol. 2020 Sep;139:109578. doi: 10.1016/j.enzmictec.2020.109578. Epub 2020 May 4.

Abstract

A highly efficient enzyme-based sensor was made from a heteroleptic tris(phthalocyaninato) europium triple-decker complex Eu(Pc)[Pc(OPh)], for the first time. The ITO working electrode was modified by a mixture of hybrid multi-layers consisting of Eu(Pc)[Pc(OPh)], stearic acid (SA) and tyrosinase (Tyr) (Eu(Pc)[Pc(OPh)]/SA/Tyr-ITO) using the Langmuir-Blodgett (LB) technique. The microstructure and morphology of the resulting LB films can be characterized by their π-A isotherms, UV-vis absorption spectra, X-ray diffraction and atomic force microscopy (AFM) analysis. The experimental results revealed that the triple-decker molecules of Eu(Pc)[Pc(OPh)] take a H-type molecular stacking mode in both pure and mixed LB film, and the microstructures of films were effectively improved by mixing SA within the triple-decker Eu(Pc)[Pc(OPh)] molecules. The excellent electrocatalytic effect of the Eu(Pc)[Pc(OPh)]/SA/Tyr LB films, leads to a good linear increase from 5.26 × 10 to 2.1 × 10 M for catechol. It also leads to an excellent sensitivity of 2.19 μA/μM, and a detection limits of 6.29 × 10 M (S/N = 3) of catehol at the oxidation peak, achieving best catechol sensing performance among the phthalocyanine-based biosensing mediators. The reduction peak also showed a good linear increase from 5.26 × 10 to 1.60 × 10 M for catechol with a sensitivity of 0.615 μA/μM, and a detection limit of 1.69 × 10 M (S/N = 3). Moreover, the Eu(Pc)[Pc(OPh)]/SA/Tyr-ITO electrode are easy to reproduce, stable and resistant to interference when it comes to detection for catehol, and this indicates great potential of industrial application of tris(phthalocyaninato) rare earth complexes in ultrasensitive and specific biosensors.

摘要

首次制备了一种基于杂化三(酞菁基)铕三重堆积配合物 Eu(Pc)[Pc(OPh)]的高效酶基传感器。通过使用 Langmuir-Blodgett (LB) 技术,将由 Eu(Pc)[Pc(OPh)]、硬脂酸 (SA) 和酪氨酸酶 (Tyr) 组成的混合多层结构混合物修饰 ITO 工作电极(Eu(Pc)[Pc(OPh)]/SA/Tyr-ITO)。通过π-A 等压线、紫外-可见吸收光谱、X 射线衍射和原子力显微镜 (AFM) 分析可以对所得 LB 膜的微观结构和形态进行表征。实验结果表明,Eu(Pc)[Pc(OPh)]三重堆积分子在纯 LB 膜和混合 LB 膜中均采用 H 型分子堆积方式,并且通过混合 SA 可以有效改善 Eu(Pc)[Pc(OPh)]三重堆积分子的微结构。Eu(Pc)[Pc(OPh)]/SA/Tyr LB 膜具有优异的电催化效果,导致邻苯二酚的线性增加从 5.26×10 到 2.1×10 M。它还导致出色的灵敏度为 2.19 μA/μM,检测限为 6.29×10 M(S/N=3),在氧化峰处对邻苯二酚的检测,在基于酞菁的生物传感介质中实现了最佳的邻苯二酚传感性能。还原峰也表现出良好的线性增加,从 5.26×10 到 1.60×10 M,邻苯二酚的灵敏度为 0.615 μA/μM,检测限为 1.69×10 M(S/N=3)。此外,Eu(Pc)[Pc(OPh)]/SA/Tyr-ITO 电极在检测邻苯二酚时易于重现、稳定且抗干扰,这表明三(酞菁基)稀土配合物在超灵敏和特定生物传感器中的工业应用具有巨大潜力。

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