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Controlled synthesis of carbon nanocoils with selective coil diameters and structures by optimizing the thickness of catalyst film

机译:通过优化催化剂膜的厚度,控制合成具有选择性线圈直径和结构的碳纳米线圈

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摘要

Carbon nanocoils (CNCs) with selective coil diameters and structures have been synthesized by chemical vapor deposition using Sn/Fe binary catalyst films. CNCs, carbon nanofibers and irregular carbon nanowires could be selectively obtained by changing the thickness of the catalyst film. It is found that the coil diameters of CNCs gradually decrease with a decrease in the thickness of the catalyst films within a certain range, indicating that the coil diameters of CNCs can be effectively controlled by adjusting the thickness of Sn/Fe catalyst films. The morphology of the CNCs tends to change from spring-like to plait-like, and the graphitization degree of the CNC increases when their diameters are reduced. Our results provide important guidelines for the controlled synthesis of CNCs with selective coil diameters and selective structures by optimizing the catalyst film thickness. (C) 2015 Elsevier Ltd. All rights reserved.
机译:具有选择性线圈直径和结构的碳纳米线圈(CNC)已通过使用Sn / Fe二元催化剂薄膜的化学气相沉积法合成。通过改变催化剂膜的厚度,可以选择性地获得CNC,碳纳米纤维和不规则碳纳米线。发现在一定范围内,随着催化剂膜厚度的减小,CNC的线圈直径逐渐减小,这表明通过调节Sn / Fe催化剂膜的厚度可以有效地控制CNC的线圈直径。 CNC的形态趋于从弹簧状变为辫状,并且当直径减小时,CNC的石墨化程度增加。我们的结果为优化具有选择性的线圈直径和选择性结构的CNC的控制膜厚度优化提供了重要的指导方针。 (C)2015 Elsevier Ltd.保留所有权利。

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