Y-junction carbon nanocoils: synthesis by chemical vapor deposition and formation mechanism

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作者
Er-Xiong Ding
Jing Wang
Hong-Zhang Geng
Wen-Yi Wang
Yan Wang
Ze-Chen Zhang
Zhi-Jia Luo
Hai-Jie Yang
Cheng-Xiong Zou
Jianli Kang
Lujun Pan
机构
[1] State Key Laboratory of Separation Membranes and Membrane Processes,
[2] School of Material Science and Engineering,undefined
[3] Tianjin Polytechnic University,undefined
[4] School of Physics and Optoelectronic Technology,undefined
[5] Dalian University of Technology,undefined
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Y-junction carbon nanocoils (Y-CNCs) were synthesized by thermal chemical vapor deposition using Ni catalyst prepared by spray-coating method. According to the emerging morphologies of Y-CNCs, several growth models were advanced to elucidate their formation mechanisms. Regarding the Y-CNCs without metal catalyst in the Y-junctions, fusing of contiguous CNCs and a tip-growth mechanism are considered to be responsible for their formation. However, as for the Y-CNCs with catalyst presence in the Y-junctions, the formation can be ascribed to nanoscale soldering/welding and bottom-growth mechanism. It is found that increasing spray-coating time for catalyst preparation generates agglomerated larger nanoparticles strongly adhering to the substrate, resulting in bottom-growth of CNCs and appearance of the metal catalyst in the Y-junctions. In the contrary case, CNCs catalyzed by isolated smaller nanoparticles develop Y-junctions with an absence of metal catalyst by virtue of weaker adhesion of catalyst with the substrate and tip-growth of CNCs.
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