Department of Mechanical Engineering, Korea University, Seoul 136-701, Korea.
Nanotechnology. 2016 Sep 9;27(36):365501. doi: 10.1088/0957-4484/27/36/365501. Epub 2016 Aug 1.
Recent advancements of nanomaterials have inspired numerous scientific and industrial applications. Zinc oxide nanowires (ZnO NWs) is one of the most important nanomaterials due to their extraordinary properties. However, studies performed over the past decade have reported toxicity of ZnO NWs. Therefore, there has been increasing demand for effective detection of ZnO NWs. In this study, we propose a method for the detection of ZnO NW using a quartz crystal microbalance (QCM) and DNA probes. The detection method is based on the covalent interaction between ZnO NWs and the phosphoric acid group of single-stranded DNA (i.e., linker DNA), and DNA hybridization between the linker DNA and the probe DNA strand on the QCM electrode. Rapid, high sensitivity, in situ detection of ZnO NWs was demonstrated for the first time. The limit of detection was 10(-4) μg ml(-1) in deionized water, which represents a sensitivity that is 100000 times higher than the toxic ZnO NW concentration level. Moreover, the selectivity of the ZnO NW detection method was demonstrated by comparison with other types of nanowires and the method was able to detect ZnO NWs in tap water sensitively even after stored for 14 d in a refrigerator. The performance of our proposed method was sufficient to achieve detection of ZnO NW in the 'real-world' environment.
纳米材料的最新进展激发了众多科学和工业应用。氧化锌纳米线(ZnO NWs)是最重要的纳米材料之一,因为它们具有非凡的特性。然而,过去十年的研究报告表明 ZnO NWs 具有毒性。因此,人们对有效检测 ZnO NWs 的需求日益增加。在本研究中,我们提出了一种使用石英晶体微天平(QCM)和 DNA 探针检测 ZnO NW 的方法。该检测方法基于 ZnO NW 与单链 DNA (即连接 DNA)的磷酸基团之间的共价相互作用,以及连接 DNA 与 QCM 电极上探针 DNA 链之间的 DNA 杂交。首次证明了对 ZnO NW 的快速、高灵敏度、原位检测。在去离子水中的检测限为 10(-4) μg ml(-1),这比有毒 ZnO NW 浓度水平高 100000 倍。此外,通过与其他类型的纳米线进行比较,证明了 ZnO NW 检测方法的选择性,并且即使在冰箱中储存 14 天后,该方法仍能灵敏地检测自来水中的 ZnO NWs。我们提出的方法的性能足以实现对“真实世界”环境中 ZnO NW 的检测。