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Control of electrostatic self-assembly seeding of diamond nanoparticles on carbon nanowalls

机译:金刚石纳米颗粒在碳纳米壁上的静电自组装晶种控制

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摘要

Seeding of diamond nanoparticles on vertically-aligned multi-layer graphene, the so-called carbon nanowalls (CNWs), is studied by using deionized water, ethylene glycol, ethanol, and formamide as dispersion mediums. Detonation nanodiamond particles show the smallest mean size and size distribution with a high positive zeta potential when dispersed in ethanol. The contact angle of ethanol on CNWs is almost zero degree, confirming highly wetting behaviour. The diamond nanoparticles dispersed in ethanol are distributed the most uniformly with minimal aggregation on CNWs as opposed to those dispersed in other liquids. The resulting diamond nanoparticle-seeded CNWs, followed by short-term growth in microwave plasma chemical vapor deposition, show a marked decrease in field emission turn-on field down to 1.3 V mu m(-1) together with a large increase in current density, compared to bare CNWs without diamond seeding. The results provide a way to control the density, size, and uniformity (spacing) of diamond nanoparticles on CNWs and should be applied to fabricate hybrid materials and devices using nanodiamond and nanocarbons.
机译:通过使用去离子水、乙二醇、乙醇和甲酰胺作为分散介质,研究了金刚石纳米颗粒在垂直排列的多层石墨烯(即所谓的碳纳米壁 (CNW))上的种子。爆轰纳米金刚石颗粒在乙醇中分散时表现出最小的平均尺寸和尺寸分布,具有高正 zeta 电位。乙醇与CNWs的接触角几乎为零,证实了高度润湿性。与分散在其他液体中的金刚石纳米颗粒相比,分散在乙醇中的金刚石纳米颗粒在CNW上的分布最均匀,聚集最小。与没有金刚石晶种的裸CNWs相比,所得到的金刚石纳米颗粒种子CNW,随后微波等离子体化学气相沉积的短期增长显示出场发射导通场的显着降低,降至1.3 V μ m(-1),电流密度也大幅增加。该结果为控制金刚石纳米颗粒在CNW上的密度、尺寸和均匀性(间距)提供了一种方法,应用于使用纳米金刚石和纳米碳制造混合材料和器件。

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