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基于羧基化石墨烯-羧基化多壁碳纳米管-金纳米粒子修饰电极的用于定量测定还原糖的无酶电化学传感器

Enzyme-Free Electrochemical Sensors for Quantification of Reducing Sugars Based on Carboxylated Graphene-Carboxylated Multiwalled Carbon Nanotubes-Gold Nanoparticle-Modified Electrode.

作者信息

Liu Ke, Wang Xiaodong, Luo Bin, Wang Cheng, Hou Peichen, Dong Hongtu, Li Aixue, Zhao Chunjiang

机构信息

Heyuan Branch, Guangdong Laboratory for Lingnan Modern Agriculture, Heyuan, China.

Research Center of Intelligent Equipment, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.

出版信息

Front Plant Sci. 2022 Apr 28;13:872190. doi: 10.3389/fpls.2022.872190. eCollection 2022.

Abstract

The reducing sugars of plants, including glucose, fructose, arabinose, galactose, xylose, and mannose, are not only the energy source of plants, but also have the messenger function of hormones in signal transduction. Moreover, they also determine the quality and flavor of agricultural products. Therefore, the quantification of reducing sugars in plants or agriculture products is very important in precision agriculture. However, the upper detection limit of the currently developed sugar sensor is not high enough for detection. In this study, an enzyme-free electrochemical sensor for detection of reducing sugars was developed. Three-dimensional composite materials based on carboxylated graphene-carboxylated multi-walled carbon nanotubes attaching with gold nanoparticles (COOH-GR-COOH-MWNT-AuNPs) were formed and applied for the non-enzymatic determination of glucose, fructose, arabinose, mannose, xylose, and galactose. It was demonstrated that the COOH-GR-COOH-MWNT-AuNP-modified electrode exhibited a good catalysis behavior to these reducing sugars due to the synergistic effect of the COOH-GR, COOH-MWNT, and AuNPs. The detection range of the sensor for glucose, fructose, arabinose, mannose, xylose, and galactose is 5-80, 2-20, 2-50, 5-60, 2-40, and 5-40 mM, respectively. To our knowledge, the upper detection limit of our enzyme-free sugar sensor is the highest compared to previous studies, which is more suitable for detection of sugars in agricultural products and plants. In addition, this sensor is simple and portable, with good reproducibility and accuracy; it will have broad practical application value in precision agriculture.

摘要

植物中的还原糖,包括葡萄糖、果糖、阿拉伯糖、半乳糖、木糖和甘露糖,不仅是植物的能量来源,还在信号转导中具有激素的信使功能。此外,它们还决定了农产品的品质和风味。因此,在精准农业中,对植物或农产品中还原糖的定量分析非常重要。然而,目前开发的糖传感器的检测上限不够高,无法满足检测需求。在本研究中,开发了一种用于检测还原糖的无酶电化学传感器。基于羧基化石墨烯-羧基化多壁碳纳米管附着金纳米粒子(COOH-GR-COOH-MWNT-AuNPs)形成了三维复合材料,并将其应用于葡萄糖、果糖、阿拉伯糖、甘露糖、木糖和半乳糖的非酶测定。结果表明,由于COOH-GR、COOH-MWNT和AuNPs的协同作用,COOH-GR-COOH-MWNT-AuNP修饰电极对这些还原糖表现出良好的催化行为。该传感器对葡萄糖、果糖、阿拉伯糖、甘露糖、木糖和半乳糖的检测范围分别为5-80、2-20、2-50、5-60、2-40和5-40 mM。据我们所知,与先前的研究相比,我们的无酶糖传感器的检测上限最高,更适合检测农产品和植物中的糖。此外,该传感器简单便携,具有良好的重现性和准确性;它将在精准农业中具有广泛的实际应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c352/9098227/040cefd379ef/fpls-13-872190-g001.jpg

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