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首页> 外文期刊>ACS applied materials & interfaces >Electrostatic Grafting of Diamond Nanoparticles: A Versatile Route to Nanocrystalline Diamond Thin Films
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Electrostatic Grafting of Diamond Nanoparticles: A Versatile Route to Nanocrystalline Diamond Thin Films

机译:金刚石纳米粒子的静电接枝:纳米晶金刚石薄膜的通用途径。

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摘要

Nanodiamond (ND) seeding is a well-established route toward the CVD (chemical vapor deposition) synthesis of diamond ultrathin films. This method is based on the deposition onto a substrate of diamond nanoparticles which act as pre-existing sp~3 seeds. Here, we report on a straightforward method to disperse diamond nanoparticles on a substrate by taking advantage of the electrostatic interactions between the nanocliamonds and the substrate surface coated with a cationic polymer. This layer-by-layer deposition technique leads to reproducible and homogeneous large-scale nanoparticle deposits independent of the substrate's nature and shape. No specific functionalization of the nanoparticles is required, and low concentrated solutions can be used. The density of NDs on the substrate can be controlled, as shown by in situ ATR-FTIR (attenuated total reflection Fourier transform infrared) analysis and QCM (quartz crystal microbalance) measurements. Highly dense and compact ND deposits can be obtained, allowing CVD growth of nanocrystalline diamond ultrathin films (70 nm) on various substrates. The synthesis of 3D structured and patterned diamond thin films has also been demonstrated with this method.
机译:纳米金刚石(ND)晶种是金刚石超薄膜的CVD(化学气相沉积)合成的公认方法。该方法是基于将金刚石纳米粒子作为预先存在的sp〜3种子而沉积在基底上的。在这里,我们报道了一种利用纳米金刚石与涂覆有阳离子聚合物的基材表面之间的静电相互作用,将金刚石纳米颗粒分散在基材上的简单方法。这种逐层沉积技术导致可重现且均匀的大规模纳米颗粒沉积,而与基材的性质和形状无关。不需要纳米颗粒的特定功能化,并且可以使用低浓度的溶液。如原位ATR-FTIR(衰减全反射傅立叶变换红外)分析和QCM(石英晶体微天平)测量所示,可以控制基板上ND的密度。可以获得高密度和致密的ND沉积物,从而允许在各种基板上进行CVD纳米晶体金刚石超薄膜(70 nm)的生长。 3D结构化和图案化的金刚石薄膜的合成也已通过这种方法得到证明。

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