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首页> 外文期刊>Journal of the Brazilian Chemical Society >Chemically Reduced Graphene Oxide on Gold Electrodes from Recordable CDs: Characterization and Potential Sensing Applications
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Chemically Reduced Graphene Oxide on Gold Electrodes from Recordable CDs: Characterization and Potential Sensing Applications

机译:来自可记录CD的金电极上的化学还原石墨烯氧化物:表征和潜在传感应用

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This work presents the development and characterization of a new chemically modified electrode exploiting recordable Au-rewritable compact discs (AuCDs) as substrate for drop casting of a chemically-reduced graphene-oxide slurry focusing on simple and low-cost electrochemical sensors. Increase in electrochemical responses in cyclic voltammetric and amperometric measurements were achieved using the proposed sensor. Both scanning electron microscopy and atomic force microscopy data showed increase in rugosity (about 46% higher) for the chemically reduced graphene oxide (CRGO) AuCD surface while Raman spectroscopy confirmed the presence of structural defects of graphene. The calculated charge transfer resistances (Rct) and heterogeneous electron transfer rate constants (k0) were 1638 Ω and 0.0022 cm s-1 for the bare substrate, and 91 Ω and 0.0027 cm s-1 for the modified electrode, evidencing the facilitated electron transfer of the CRGO-AuCD surface. The dopamine (DP) amperometric detection using CRGO-AuCD provided low detection limit (0.12 ?μg L-1) compared with other modified electrodes already reported, high precision (relative standard deviation (RSD) 5%) and analytical frequency (370 h-1). As a proof-of-concept, DP determination in synthetic saliva samples was performed and a satisfactory recovery value (98.6 ?± 0.9%) was obtained.
机译:该工作介绍了一种新的化学修饰电极利用可记录的Au-可重写光盘(AUCD)作为基板的开发和表征,用于施加在简单和低成本的电化学传感器上的化学减少的石墨烯氧化物浆料的铸造。使用所提出的传感器实现了循环伏安和测量测量中的电化学反应的增加。扫描电子显微镜和原子力显微镜数据既显示出对化学减少的石墨烯氧化物(CRGO)AUCD表面的粗糙度(约46%)的增加,而拉曼光谱证实石墨烯结构缺陷的存在。计算的电荷转移电阻(RCT)和异构电子传递速率常数(K0)为裸基板为1638Ω和0.0022cm S-1,为改进电极的91Ω和0.0027cm S-1,证明了便利的电子转移Crgo-Aucd表面。使用CRGO-AUCD的多巴胺(DP)安培检测为已经报道的其他改进的电极,高精度(相对标准偏差(RSD)<5%)和分析频率(370小时,提供了低检测极限(0.12ΩΩ克L-1) -1)。作为概念验证,进行了合成唾液样品的DP测定,得到了令人满意的回收率(98.6?±0.9%)。

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