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Systematic investigation of the catalyst composition effects on single-walled carbon nanotubes synthesis in floating-catalyst CVD

机译:浮动催化剂CVD中单壁碳纳米管合成催化剂组成作用的系统研究

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摘要

Enormous technological promise of single-walled carbon nanotubes (SWCNTs) can only be harnessed with the premise of controllable synthesis of SWCNTs, where catalyst composition thermodynamically plays a vital role. Herein, we have systematically investigated the effects of catalyst composition on SWCNTs synthesis, using a novel floating-catalyst chemical vapor deposition (FCCVD) system, consisting of catalyst synthesis via spark generator, FCCVD reactor and a real-time monitor of catalysts and SWCNTs. We synthesized SWCNTs from both monometallic (Fe, Co, Ni), bimetallic (Co-Ni, Co-Fe) catalyst particles and kinetically optimized yield and performance of SWCNTs films. We found that the highest yield of SWCNTs from Fe is 15 times as that of Ni SWCNTs and the Co-Ni SWCNTs film possesses best optoelectronic performance. Interestingly, the mean diameter of SWCNTs was found related to the catalyst particle size distributions, but not composition. Moreover, detailed atomic structures determination revealed that SWCNTs from Fe and Co have a wide chirality distribution spanning from zig-zag to armchair edges. However, Co-Ni SWCNTs have comparatively narrower chirality distribution having 71% SWCNTs in the chiral angle of 15-30 degrees. Our results indicate that catalyst composition can efficiently tune yield and characteristics of SWCNTs, but it does not dramatically shift chirality of FCCVD SWCNTs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:单壁碳纳米管(SWCNTS)的巨大技术承诺只能利用SWCNT的可控合成的前提,其中催化剂组合物热力学地发挥重要作用。在此,我们通过火花发生器,FCCVD反应器和催化剂和SWCNT的实时监测器组成,通过新的浮催化剂化学气相沉积(FCCVD)系统,系统地研究了催化剂组合物对SWCNT合成对SWCNT合成的影响。我们从单身金属(Fe,Co,Ni),双金属(Co-Ni,Co-Fe)催化剂颗粒和动力学的产量和SWCNTS薄膜的性能合成SWCNT。我们发现,来自FE的SWCNT的最高产量是NI SWCNT的15倍,并且CO-NI SWCNTS薄膜具有最佳的光电性能。有趣的是,发现SWCNT的平均直径与催化剂粒度分布有关,但不是组成。此外,详细的原子结构确定揭示了来自Fe和Co的SWCNTS具有从Zig-Zag到扶手椅边缘的宽的手性分布。然而,CO-NI SWCNT具有相对较窄的手性较窄的手性分布,其手性角度为15-30度。我们的结果表明,催化剂组合物可以有效地调节SWCNT的产量和特征,但它不会显着地移位FCCVD SWCNT的手性。 (c)2019年elestvier有限公司保留所有权利。

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