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Polarity determined growth of carbon nanotubes of different alignments

机译:极性决定了不同排列的碳纳米管的生长

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Growing carbon nanotubes (CNTs) of different alignments, including surface-bounded and vertically aligned arrays, on metallic electrodes was achieved by applying electric voltages of different polarities on metallic electrodes during the laser-assisted chemical vapor deposition process. Surface-bounded CNTs were found to crawl out from the positively charged electrodes. In contrary, vertically aligned CNTs dominated the negatively charged electrodes. The alignment control was ascribed to the movement of catalyst-nanoparticles (NPs) under the influence of external electric field. The surface-bounded CNTs were ascribed to the repulsive forces between the catalyst NPs and the anodes. The vertically aligned CNTs were ascribed to the joint interactions of catalyst-cathode interactions and tube-tube interactions. This investigation suggests a convenient approach to control the alignment of CNT arrays for applications in different fields.
机译:通过在激光辅助化学气相沉积过程中在金属电极上施加不同极性的电压,可以在金属电极上生长不同排列的碳纳米管(CNT),包括表面结合的阵列和垂直排列的阵列。发现表面结合的CNT从带正电的电极中爬出。相反,垂直排列的CNT占据了带负电的电极。取向控制归因于在外部电场的影响下催化剂纳米颗粒(NPs)的运动。表面结合的CNT归因于催化剂NP与阳极之间的排斥力。垂直排列的碳纳米管归因于催化剂-阴极相互作用和管-管相互作用的联合相互作用。这项研究提出了一种方便的方法来控制CNT阵列在不同领域中的应用。

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