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基于尺寸稳定阳极的尿素线性扫描伏安法测定传感器。

Dimensionally Stable Anode Based Sensor for Urea Determination via Linear Sweep Voltammetry.

作者信息

Vasconcellos Maria de Lourdes S, Silva Luiz Ricardo G, Lee Chung-Seop, Fajardo Ana Sofia, Garcia-Segura Sergi, Ribeiro Josimar

机构信息

Departamento de Química, Centro de Ciências Exatas, Universidade Federal do Espírito Santo, Av. Fernando Ferrari, 514, Goiabeiras, Vitória CEP 29075-910, ES, Brazil.

School of Sustainable Engineering and the Built Environment, Arizona State University, Tempe, AZ 85287, USA.

出版信息

Sensors (Basel). 2021 May 15;21(10):3450. doi: 10.3390/s21103450.

Abstract

Urea is an added value chemical with wide applications in the industry and agriculture. The release of urea waste to the environment affects ecosystem health despite its low toxicity. Online monitoring of urea for industrial applications and environmental health is an unaddressed challenge. Electroanalytical techniques can be a smart integrated solution for online monitoring if sensors can overcome the major barrier associated with long-term stability. Mixed metal oxides have shown excellent stability in environmental conditions with long lasting operational lives. However, these materials have been barely explored for sensing applications. This work presents a proof of concept that demonstrates the applicability of an indirect electroanalytical quantification method of urea. The use of Ti/RuO-TiO-SnO dimensional stable anode (DSA) can provide accurate and sensitive quantification of urea in aqueous samples exploiting the excellent catalytic properties of DSA on the electrogeneration of active chlorine species. The cathodic reduction of accumulated HClO/ClO from anodic electrogeneration presented a direct relationship with urea concentration. This novel method can allow urea quantification with a competitive LOD of 1.83 × 10 mol L within a linear range of 6.66 × 10 to 3.33 × 10 mol L of urea concentration.

摘要

尿素是一种具有广泛工农业应用价值的化学品。尽管尿素毒性较低,但将尿素废物排放到环境中会影响生态系统健康。对工业应用和环境健康中的尿素进行在线监测是一个尚未解决的挑战。如果传感器能够克服与长期稳定性相关的主要障碍,电分析技术可以成为在线监测的智能集成解决方案。混合金属氧化物在环境条件下表现出优异的稳定性,使用寿命长。然而,这些材料在传感应用方面几乎未被探索。这项工作提出了一个概念验证,证明了尿素间接电分析定量方法的适用性。使用Ti/RuO-TiO-SnO尺寸稳定阳极(DSA),利用DSA对活性氯物种电生成的优异催化性能,可以对水样中的尿素进行准确而灵敏的定量。阳极电生成积累的HClO/ClO的阴极还原与尿素浓度呈直接关系。这种新方法能够在尿素浓度为6.66×10至3.33×10 mol/L的线性范围内,以1.83×10 mol/L的竞争检测限对尿素进行定量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a39b/8156184/c8f96b665c40/sensors-21-03450-g001.jpg

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