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An Affordable Wet Chemical Route to Grow Conducting Hybrid Graphite-Diamond Nanowires: Demonstration by A Single Nanowire Device

机译:一种经济实惠的湿化学路线以生长可导电的石墨-金刚石纳米线:通过单个纳米线装置进行的演示

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摘要

We report an affordable wet chemical route for the reproducible hybrid graphite-diamond nanowires (G-DNWs) growth from cysteamine functionalized diamond nanoparticles (>ND-Cys) via pH induced self-assembly, which has been visualized through SEM and TEM images. Interestingly, the mechanistic aspects behind that self-assembly directed G-DNWs formation was discussed in details. Notably, above self-assembly was validated by AFM and TEM data. Further interrogations by XRD and Raman data were revealed the possible graphite sheath wrapping over DNWs. Moreover, the HR-TEM studies also verified the coexistence of less perfect sp2 graphite layer wrapped over the sp3 diamond carbon and the impurity channels as well. Very importantly, conductivity of hybrid G-DNWs was verified via fabrication of a single G-DNW. Wherein, the better conductivity of G-DNW portion L2 was found as 2.4 ± 1.92 × 10−6 mS/cm and revealed its effective applicability in near future. In addition to note, temperature dependent carrier transport mechanisms and activation energy calculations were reported in details in this work. Ultimately, to demonstrate the importance of our conductivity measurements, the possible mechanism behind the electrical transport and the comparative account on electrical resistivities of carbon based materials were provided.
机译:我们报告了一种可负担得起的湿化学路线,用于通过pH诱导的自组装从半胱胺官能化的金刚石纳米粒子(> ND-Cys )产生可复制的杂化石墨-金刚石纳米线(G-DNWs),该过程已通过可视化SEM和TEM图像。有趣的是,详细讨论了自组装导向的G-DNW形成背后的机理。值得注意的是,以上自组装已通过AFM和TEM数据验证。通过XRD和拉曼数据的进一步询问揭示了可能的石墨鞘包裹在DNW上。此外,HR-TEM研究还证实了包裹在sp 3 金刚石碳和杂质通道上的不太完美的sp 2 石墨层并存。非常重要的是,通过制造单个G-DNW来验证混合G-DNW的电导率。其中,G-DNW部分L2具有更好的电导率,为2.4±1.92×10 -6 mS / cm,显示出其在不久的将来的有效适用性。除说明外,这项工作中还详细报告了与温度有关的载流子传输机制和活化能计算。最终,为了说明电导率测量的重要性,提供了电传输背后的可能机理以及对碳基材料的电阻率的比较说明。

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