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Non-covalent functionalization of CVD-grown graphene with Au nanoparticles for electrochemical sensing application

机译:CVD生长的石墨烯与Au纳米粒子的非共价官能化,用于电化学传感应用

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Graphene is an one-atom thick two-dimensional (2D) transparent carbon sheet which has aroused potential interest for the ultrafast high-sensitive electronic device application. Functionalization of 2D graphene is one of the important aspects to manipulate its intrinsic properties achieving the requisite aptness for its booming applications. Here, a novel strategy for the noncovalent surface functionalization of 2D graphene layer has been proposed utilizing self-assemble monolayers (SAM) of 1,4-benzenedimethanethiol (BDMT) that can further anchor gold nanoparticles (AuNPs) on the graphene surface. Raman spectroscopy and contact angle measurements confirm the SAM modification on graphene surface. AFM and XPS verify the anchoring of AuNPs on the graphene surface. Furthermore, the AuNPs-anchored BDMT-modified graphene (AuNPs/BDMT/G) electrode is explored for highly sensitive electrochemical detection of H~(2)O~(2), exhibiting an impressive detection limit of 1.8?μM (signal-to-noise ratio of 3). Graphical abstract.
机译:石墨烯是一原子厚的二维(2D)透明碳片,已引起超快高灵敏电子设备应用的潜在兴趣。 2D石墨烯的功能化是控制其内在特性,实现其蓬勃发展应用所必需的适当性的重要方面之一。在这里,已经提出了一种利用2,4-苯二甲硫醇(BDMT)的自组装单分子膜(SAM)进一步将2D石墨烯层进行非共价表面官能化的新策略,该方法可以将金纳米颗粒(AuNPs)进一步锚固在石墨烯表面。拉曼光谱和接触角测量结果证实了石墨烯表面的SAM改性。 AFM和XPS验证了AuNP在石墨烯表面的锚固。此外,探索了AuNPs锚定的BDMT修饰石墨烯(AuNPs / BDMT / G)电极对H〜(2)O〜(2)的高灵敏度电化学检测,其检测极限为1.8?μM(信号对-噪声比为3)。图形概要。

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