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负载于两亲性三嗪-脲功能化多孔有机聚合物上的钯作为一种高效电催化剂用于人血浆中芦丁的电化学传感。

Palladium Supported on an Amphiphilic Triazine-Urea-Functionalized Porous Organic Polymer as a Highly Efficient Electrocatalyst for Electrochemical Sensing of Rutin in Human Plasma.

机构信息

Department of Energy and Materials Engineering , Dongguk University , Seoul 04620 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2018 Jun 13;10(23):19554-19563. doi: 10.1021/acsami.8b00579. Epub 2018 Jun 1.

DOI:10.1021/acsami.8b00579
PMID:29790734
Abstract

Metal nanoparticle-containing porous organic polymers have gained great interest in chemical and pharmaceutical applications owing to their high reactivity and good recyclability. In the present work, a palladium nanoparticle-decorated triazine-urea-based porous organic polymer (Pd@TU-POP) was designed and synthesized using 1,3-bis(4-aminophenyl)urea with cyanuric chloride and palladium acetate. The porous structure and physicochemical properties of the electrode material Pd@TU-POP were observed using a range of standard techniques. The Pd@TU-POP material on the electrode surface showed superior sensing ability for rutin (RT) because the Pd dispersion facilitated the electrocatalytic performance of TU-POP by reducing the overpotential of RT oxidation dramatically and improving the stability significantly. Furthermore, TU-POP provides excellent structural features for loading Pd nanoparticles, and the resulting Pd@TU-POP exhibited enhanced electron transfer and outstanding sensing capability in a linear range between 2 and 200 pM having a low detection value of 5.92 × 10 M (S/N = 3). The abundant porous structure of Pd@TU-POP not only provides electron transport channels for RT diffusion but also offers a facile route for quantification sensing of RT with satisfactory recoveries in aqueous electrolyte containing human plasma and red wine. These data reveal that the synthetic Pd@TU-POP is an excellent potential platform for the detection of RT in biological samples.

摘要

含金属纳米粒子的多孔有机聚合物由于其高反应性和良好的可回收性,在化学和制药应用中引起了极大的兴趣。在本工作中,使用 1,3-双(4-氨基苯基)脲与三聚氰胺氯和醋酸钯合成了钯纳米粒子修饰的三嗪-脲基多孔有机聚合物(Pd@TU-POP)。通过一系列标准技术观察了电极材料 Pd@TU-POP 的多孔结构和物理化学性质。Pd@TU-POP 材料在电极表面对芦丁(RT)表现出优异的传感能力,因为 Pd 分散体通过显著降低 RT 氧化的过电势和显著提高稳定性来促进 TU-POP 的电催化性能。此外,TU-POP 为负载 Pd 纳米粒子提供了极好的结构特征,所得的 Pd@TU-POP 表现出增强的电子转移和在 2 至 200 pM 之间的线性范围内的出色传感能力,检测值低至 5.92×10 M(S/N = 3)。Pd@TU-POP 的丰富多孔结构不仅为 RT 的扩散提供了电子传输通道,而且还为在含有人体血浆和红酒的水溶液电解质中对 RT 的定量传感提供了简便的途径,回收率令人满意。这些数据表明,合成的 Pd@TU-POP 是一种用于检测生物样品中 RT 的优秀潜在平台。

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