基于金属-有机框架衍生镍双金属碳纳米复合材料的无线双极电致变色传感器视觉检测尿酸

IF 3.5 4区 化学 Q2 ELECTROCHEMISTRY
Qunyan Zhu, Huahua Dong, Guoliang Lu, Kaige Qv, Wensheng Yang, Lin Zhang
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引用次数: 0

摘要

电致变色传感器具有将电化学信号转换为视觉输出的能力,因此在健康监测方面具有引人注目的优势。然而,实现无干扰和高灵敏度的生物分子检测仍然具有挑战性,主要是因为将电致变色材料与(酶)催化剂结合在一起,同时保持抗干扰性能的挑战。在这项工作中,利用NiCo双金属嵌入氮掺杂碳(NiCo@NC)纳米复合材料,提出了一种用于无线和视觉检测尿酸(UA)的封闭双极电致变色(cBPEC)传感器。在cBPEC结构中,用NiCo@NC修饰的极化阳极使UA的电催化氧化成为可能。生成的电子随后被转移到物理分离的极化阴极,用普鲁士蓝(PB)薄膜修饰,其中PB还原产生与UA浓度定量相关的颜色变化。该传感器具有良好的重现性、可重复使用性和选择性,UA浓度线性范围为50 ~ 800 μM,检测限为38 μM。通过检测胎牛血清样品中的UA,成功验证了该传感器的实用性,回收率为98.3-102.6%(相对标准偏差≤3.37%),从而证明了其在UA监测方面的生物医学应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Wireless Bipolar Electrochromic Sensor Based on Metal–Organic Framework-Derived NiCo Bimetallic Carbon Nanocomposite for Visual Detection of Uric Acid

Wireless Bipolar Electrochromic Sensor Based on Metal–Organic Framework-Derived NiCo Bimetallic Carbon Nanocomposite for Visual Detection of Uric Acid

Wireless Bipolar Electrochromic Sensor Based on Metal–Organic Framework-Derived NiCo Bimetallic Carbon Nanocomposite for Visual Detection of Uric Acid

Wireless Bipolar Electrochromic Sensor Based on Metal–Organic Framework-Derived NiCo Bimetallic Carbon Nanocomposite for Visual Detection of Uric Acid

Electrochromic sensors offer compelling advantages in health monitoring owing to their ability to convert electrochemical signals into visual outputs. However, achieving interference-free and highly sensitive detection of biomolecules remains challenging, mainly due to the challenges of integrating electrochromic materials with (enzymatic) catalysts while preserving anti-interference performance. In this work, a closed bipolar electrochromic (cBPEC) sensor for wireless and visual detection of uric acid (UA) is presented, utilizing a NiCo bimetallic embedded nitrogen-doped carbon (NiCo@NC) nanocomposite. In the cBPEC configuration, the polarized anode, modified with NiCo@NC, enables the electrocatalytic oxidation of UA. The generated electrons are then transferred to the physically separated polarized cathode, modified with a Prussian blue (PB) film, where PB reduction produces a color change quantitatively correlated with UA concentration. The cBPEC sensor exhibits excellent reproducibility, reusability, and selectivity, with a linear range for UA concentration ranging from 50 to 800 μM and a detection limit of 38 μM. The practical utility of the sensor is successfully validated by detecting UA in fetal bovine serum samples, yielding recoveries of 98.3–102.6% (relative standard deviations ≤3.37%), thus demonstrating its potential for biomedical applications in UA monitoring.

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来源期刊
ChemElectroChem
ChemElectroChem ELECTROCHEMISTRY-
CiteScore
7.90
自引率
2.50%
发文量
515
审稿时长
1.2 months
期刊介绍: ChemElectroChem is aimed to become a top-ranking electrochemistry journal for primary research papers and critical secondary information from authors across the world. The journal covers the entire scope of pure and applied electrochemistry, the latter encompassing (among others) energy applications, electrochemistry at interfaces (including surfaces), photoelectrochemistry and bioelectrochemistry.
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