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Controlled growth of CNT in mesoporous AAO through optimized conditions for membrane preparation and CVD operation

机译:通过优化膜制备和CVD操作条件,控制了CNT在中孔AAO中的生长

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摘要

Anodic aluminium oxide (RAAO) membranes with a mesoporous structure were prepared under strictly controlling experimental process conditions, and physically and chemically characterized by a wide range of experimental techniques. Commercial anodic aluminium oxide (CAAO) membranes were also investigated for comparison. We demonstrated that RAAO membranes have lower content of both water and phosphorus and showed better porosity shape than CAAO. The RAAO membranes were used for template growth of carbon nanotubes (CNT) inside its pores by ethylene chemical vapour deposition (CVD) in the absence of a catalyst. Acomposite material, containing one nanotube for each channel, having the same length as the membrane thickness and an external diameter close to the diameter of the membrane holes, was obtained. Yield, selectivity and quality of CNTs in terms of diameter, length and arrangement (i.e.number of tubes for each channel) were optimized by investigating the effect of changing the experimental conditions for the CVD process. We showed that upon thermal treatment RAAO membranes were made up of crystallized allotropic alumina phases, which govern the subsequent CNT growth, because of their catalytic activity, likely due to their Lewis acidity. The strict control of experimental conditions for membrane preparation and CNT growth allowed us to enhance the carbon structural order, which is a critical requisite for CNT application as a substitute for copper in novel nano-interconnects.
机译:在严格控制实验过程条件下制备具有介孔结构的阳极氧化铝(RAAO)膜,并通过多种实验技术对其进行物理和化学表征。商业阳极氧化铝(CAAO)膜也进行了比较研究。我们证明,RAAO膜中的水和磷含量较低,并且比CAAO膜具有更好的孔隙形状。 RAAO膜用于在不存在催化剂的情况下通过乙烯化学气相沉积(CVD)在其孔内进行碳纳米管(CNT)的模板生长。获得了一种复合材料,该复合材料的每个通道包含一个纳米管,具有与膜厚度相同的长度,并且外径接近于膜孔的直径。通过研究改变CVD工艺的实验条件的影响,可以优化CNT的收率,选择性和质量,包括直径,长度和排列方式(即每个通道的管数)。我们表明,热处理后,RAAO膜由结晶的同素异形氧化铝相组成,这些相控制了后续CNT的生长,这是由于其催化活性,可能是由于其路易斯酸度。严格控制膜制备和CNT生长的实验条件使我们能够增强碳的结构有序性,这对于碳纳米管在新型纳米互连中替代铜的应用至关重要。

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