Handuja Sangeeta, Srivastava P, Vankar V D
Nanostech Laboratory, Department of Physics, Indian Institute of Technology Delhi, Hauz-Khas, New Delhi, 110016 India.
Nanoscale Res Lett. 2009 Apr 25;4(8):789-793. doi: 10.1007/s11671-009-9315-9.
We have synthesized boron-incorporated carbon nanotubes (CNTs) by decomposition of ferrocene and xylene in a thermal chemical vapor deposition set up using boric acid as the boron source. Scanning and transmission electron microscopy studies of the synthesized CNT samples showed that there was deterioration in crystallinity and improvement in alignment of the CNTs as the boron content in precursor solution increased from 0% to 15%. Raman analysis of these samples showed a shift of ~7 cm(-1) in wave number to higher side and broadening of the G band with increasing boron concentration along with an increase in intensity of the G band. Furthermore, there was an increase in the intensity of the D band along with a decrease in its wave number position with increase in boron content. We speculate that these structural modifications in the morphology and microstructure of CNTs might be due to the charge transfer from boron to the graphite matrix, resulting in shortening of the carbon-carbon bonds.
我们通过在热化学气相沉积装置中以硼酸作为硼源,使二茂铁和二甲苯分解,合成了掺硼碳纳米管(CNT)。对合成的碳纳米管样品进行扫描和透射电子显微镜研究表明,当前驱体溶液中的硼含量从0%增加到15%时,碳纳米管的结晶度变差,但排列得到改善。对这些样品的拉曼分析表明,随着硼浓度的增加,波数向更高侧移动了约7 cm⁻¹,G带变宽,同时G带强度增加。此外,随着硼含量的增加,D带强度增加,其波数位置降低。我们推测,碳纳米管形态和微观结构的这些结构变化可能是由于硼向石墨基体的电荷转移,导致碳-碳键缩短。