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Uniform and Conformal Carbon Nanofilms Produced Based on Molecular Layer Deposition

机译:基于分子层沉积的均匀和共形碳纳米膜

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摘要

Continuous and uniform carbon nanofilms (CNFs) are prepared by pyrolysis of polyimide films which are produced by molecular layer deposition (MLD). The film thickness can be easily controlled at nanometer scale by altering the cycle numbers. During the annealing process at 600 °C, the polyimide film is subject to shrinkage of 70% in thickness. The obtained CNFs do not exhibit a well-graphitized structure due to the low calcination temperature. No clear pore structures are observed in the produced films. CNFs grown on a glass substrate with a thickness of about 1.4 nm shows almost 98% optical transmittance in the visible spectrum range. Au nanoparticles coated with CNFs are produced by this method. Carbon nanotubes with uniform wall thickness are obtained using anodic aluminum oxide as a template by depositing polyimide films into its pores. Our results demonstrate that this method is very effective to coat conformal and uniform CNFs on various substrates, such as nanoparticles and porous templates, to produce functional composite nanomaterials.
机译:通过聚酰亚胺膜的热解制备连续且均匀的碳纳米膜(CNF),该聚酰亚胺膜是通过分子层沉积(MLD)制成的。通过改变循环次数,可以容易地将膜厚度控制在纳米级。在600℃的退火过程中,聚酰亚胺膜的厚度收缩70%。由于低的煅烧温度,所获得的CNF没有表现出良好的石墨化结构。在生产的膜中未观察到清晰的孔结构。在厚度约为1.4 nm的玻璃基板上生长的CNF在可见光谱范围内显示近98%的透光率。通过该方法生产了涂覆有CNF的Au纳米颗粒。使用阳极氧化铝作为模板,通过将聚酰亚胺膜沉积到其孔中,获得壁厚均匀的碳纳米管。我们的结果表明,该方法非常有效地在各种基质(例如纳米颗粒和多孔模板)上涂覆保形和均匀的CNF,以生产功能性复合纳米材料。

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