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Effect of Hydrogen Concentration on the Growth of Carbon Nanotube Arrays for Gecko-Inspired Adhesive Applications

机译:氢浓度对壁虎胶应用中碳纳米管阵列生长的影响

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Vertically-aligned carbon nanotubes (VACNTs) have extraordinary structural and mechanical properties, and have been considered as potential candidates for creating dry adhesives inspired by adhesive structures in nature. Catalytic chemical vapor deposition is widely used to grow VACNTs; however, the influential mechanism of VACNT preparation parameters (such as H2 concentration) on its adhesion property is not clear, making accurate control over the structure of VACNTs adhesive an ongoing challenge. In this article, we use electron beam-deposited SiO2/Al2O3 as a support layer, Fe as catalyst, and C2H4/H2 gas mixtures as a feed gas to prepare VACNTs, while varying the ratio of the reducing atmosphere (H2) from 0% to 35%. VACNTs synthesized at a 15% H2 concentration (5 mm × 5 mm in size) can support a maximal weight of 856 g, which indicates a macroscopic shear adhesive strength of 34 N/cm2. We propose a hydrogen-concentration-dependent model for the shear adhesive performance of VACNTs. By adjusting the amount of hydrogen present during the reaction, the morphology and quality of the prepared VACNTs can be precisely controlled, which significantly influences its shear adhesive performance. These results are advantageous for the application of carbon nanotubes as dry adhesives.
机译:垂直排列的碳纳米管(VACNTs)具有非凡的结构和机械性能,并被认为是受自然界的粘合剂结构启发而产生干式粘合剂的潜在候选者。催化化学气相沉积被广泛用于生长VACNT。但是,VACNT制备参数(例如H2浓度)对其粘附性能的影响机理尚不清楚,这使得对VACNTs粘合剂结构的精确控制成为一个挑战。在本文中,我们使用电子束沉积的SiO2 / Al2O3作为支撑层,使用Fe作为催化剂,并使用C2H4 / H2气体混合物作为进料气制备VACNT,同时将还原气氛(H2)的比例从0%更改为至35%。以15%H2浓度(5 mm×5 mm大小)合成的VACNTs的最大重量为856 g,这表明宏观剪切粘合强度为34 N / cm2。我们提出了一种基于氢浓度的模型,用于VACNTs的剪切粘合性能。通过调节反应过程中存在的氢气量,可以精确控制制备的VACNTs的形态和质量,从而显着影响其剪切粘合性能。这些结果对于将碳纳米管用作干粘合剂是有利的。

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