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普鲁士蓝纳米颗粒在PEDOT:PSS 和可溶性丝素蛋白中的电模板化用于过氧化氢传感。

Electro-templating of prussian blue nanoparticles in PEDOT:PSS and soluble silkworm protein for hydrogen peroxide sensing.

机构信息

Environmental Engineering Department, Engineering Faculty, Zonguldak Bülent Ecevit University, 67100, Zonguldak, Turkey.

Chemistry Department, Faculty of Art and Science, Middle East Technical University, Ankara, 06800, Turkey.

出版信息

Talanta. 2023 Jan 15;252:123841. doi: 10.1016/j.talanta.2022.123841. Epub 2022 Aug 17.

DOI:10.1016/j.talanta.2022.123841
PMID:36001902
Abstract

Herein, we demonstrate a high-accuracy HO selective organic-inorganic 3D-heterointerface based on catalytically in-situ reduced Prussian-blue nanoparticles (PBNPs), Poly (3,4-ethylene dioxythiophene):poly (styrene sulfonic acid) (PEDOT:PSS) and water-soluble Silkworm protein (SWp). PBNPs were immobilized on an indium tin oxide-coated glass (ITO) electrode through the electrochemical polymerization process of PEDOT:PSS and the yielding intertwining composite was templated by the use of SWp, simultaneously. Since PSS and SWp act as poly-anionic and poly-cationic charge compensating elements, the sensing system's potential cycling and amperometric response stability have been significantly enhanced thanks to the arising physical blockage effect. Constructed sensing system showed a substantially high sensitivity (1031.7 μA mM cm) and a low limit of detection value (LOD, 0.29 μM) between 1 and 130 μM HO. Eliminating the possible signal disruptions by common anion and cations in tap water, the (PEDOT:PSS:PB):SWp interface successfully selected HO between the concentration of 10-40 μM with high recovery and relatively low RSDs oscillating between 94.2-110.9% and 2.9-5.1%, respectively. It is thought that the proposed heterointerface can be used in the field of sensor, biosensor and fuel cell systems run by HO assay based on 3D scaffold-templated conductive polymer-PBNPs network.

摘要

在此,我们展示了一种基于催化原位还原普鲁士蓝纳米粒子(PBNPs)、聚 3,4-乙烯二氧噻吩:聚(苯乙烯磺酸)(PEDOT:PSS)和水溶性丝蛋白(SWp)的高精度 HO 选择性有机-无机 3D 杂化界面。PBNPs 通过 PEDOT:PSS 的电化学聚合过程和 SWp 的使用固定在氧化铟锡涂覆的玻璃(ITO)电极上,同时产生交织的复合材料。由于 PSS 和 SWp 分别作为多阴离子和多阳离子电荷补偿元素,因此传感系统的电位循环和安培响应稳定性得到了显著增强,这要归功于产生的物理阻塞效应。所构建的传感系统在 1 至 130 μM 的 HO 范围内表现出很高的灵敏度(1031.7 μA mM cm)和低检测限(LOD,0.29 μM)。在自来水中,通过常见的阴离子和阳离子消除了可能的信号干扰,(PEDOT:PSS:PB):SWp 界面在 10-40 μM 的浓度范围内成功地选择了 HO,具有高回收率和相对较低的 RSD 值,分别在 94.2-110.9%和 2.9-5.1%之间波动。人们认为,基于 3D 支架模板化导电聚合物-PBNPs 网络的 HO 测定,所提出的杂化界面可以用于传感器、生物传感器和燃料电池系统领域。

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