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Direct Voltammetric Detection of DNA and pH Sensing on Epitaxial Graphene: An Insight into the Role of Oxygenated Defects

机译:直接伏安法检测外延石墨烯上的DNA和pH传感:氧化缺陷作用的见解

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In this paper, we carried out detailed electrochemical studies of epitaxial graphene (EG) using inner-sphere and outer-sphere redox mediators. The EG sample was anodized systematically to investigate the effect of edge plane defects on the heterogeneous charge transfer kinetics and capacitive noise. We found that anodized EG, consisting of oxygen-related defects, is a superior biosensing platform for the detection of nucleic acids, uric acids (UA), dopamine (DA), and ascorbic acids (AA). Mixtures of nucleic acids (A, T, C, G) or biomolecules (AA, UA, DA) can be resolved as individual peaks using differential pulse voltammetry. In fact, an anodized EG voltammetric sensor can realize the simultaneous detection of all four DNA bases in double stranded DNA (dsDNA) without a prehydrolysis step, and it can also differentiate single stranded DNA from dsDNA. Our results show that graphene with high edge plane defects, as opposed to pristine graphene, is the choice platform in high resolution electrochemical sensing.
机译:在本文中,我们使用内球和外球氧化还原介体对外延石墨烯(EG)进行了详细的电化学研究。 EG样品进行了系统阳极化处理,以研究边缘平面缺陷对异质电荷转移动力学和电容性噪声的影响。我们发现,由与氧气有关的缺陷组成的阳极氧化EG是检测核酸,尿酸(UA),多巴胺(DA)和抗坏血酸(AA)的上乘生物传感平台。可以使用差分脉冲伏安法将核酸(A,T,C,G)或生物分子(AA,UA,DA)的混合物解析为单个峰。实际上,阳极氧化伏安伏安法传感器可以实现双链DNA(dsDNA)中所有四个DNA碱基的同时检测,而无需进行预水解步骤,并且还可以将单链DNA与dsDNA区分出来。我们的结果表明,与原始石墨烯相比,具有高边缘平面缺陷的石墨烯是高分辨率电化学​​传感的选择平台。

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