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使用低能质子束对硅衬底进行改性以实现碳纳米管的选择性生长。

Modification of silicon substrate using low-energy proton beam for selective growth of CNTs.

作者信息

Kim Hyunsook, Lee Tae Jae, Kim Somin, Lee Haiwon

机构信息

Department of Chemistry, Hanyang University, Seoul 133-791, Korea.

出版信息

J Nanosci Nanotechnol. 2011 May;11(5):4378-83. doi: 10.1166/jnn.2011.3712.

Abstract

A 3 keV low-energy proton beam was used to irradiate a silicon substrate for selective modification. The water contact angle measurement, chemical etching test with HF and the auger electron spectroscopy were used to investigate the chemical properties and the material composition of the proton beam-irradiated silicon substrate. The proton beam-irradiated silicon substrate was covered with a silicon oxide layer of about 60-70 angstroms due to the incorporation of oxygen molecules after exposure to ambient air. The silicon oxide layer produced by the proton beam was highly resistant to HF treatment which typically used to remove the silicon oxide on a substrate, and the surface of it was more hydrophilic than the native silicon oxide removed silicon surface with Si-H surface group. For the selective growth of carbon nanotubes (CNTs), the silicon oxide pattern was easily fabricated via proton beam irradiation when the silicon substrate was covered with a shadow mask. The Fe-Mo bimetallic catalysts for the growth of CNTs were adsorbed onto the silicon oxide layer, which is more hydrophilic than the silicon surface. The CNTs were grown on the patterned substrate using a chemical vapor deposition method, and it was confirmed by scanning electron microscopy.

摘要

使用3 keV的低能质子束辐照硅衬底以进行选择性改性。通过水接触角测量、氢氟酸化学蚀刻测试和俄歇电子能谱来研究质子束辐照硅衬底的化学性质和材料组成。质子束辐照后的硅衬底在暴露于环境空气后由于氧分子的掺入而覆盖有一层约60 - 70埃的氧化硅层。质子束产生的氧化硅层对通常用于去除衬底上氧化硅的氢氟酸处理具有高度抗性,并且其表面比具有Si - H表面基团的去除了天然氧化硅的硅表面更亲水。对于碳纳米管(CNT)的选择性生长,当硅衬底覆盖有荫罩时,通过质子束辐照很容易制造出氧化硅图案。用于CNT生长的铁 - 钼双金属催化剂吸附在比硅表面更亲水的氧化硅层上。使用化学气相沉积法在图案化衬底上生长CNT,并通过扫描电子显微镜进行了确认。

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