An Kay Hyeok, Park Jin Sung, Yang Cheol-Min, Jeong Seung Yol, Lim Seong Chu, Kang Chul, Son Joo-Hiuk, Jeong Mun Seok, Lee Young Hee
BK21 Physics Division, Institute of Basic Science, Center for Nanotubes and Nanostructured Composites, Sungkyunkwan University, Suwon 440-746, Korea.
J Am Chem Soc. 2005 Apr 13;127(14):5196-203. doi: 10.1021/ja0428199.
We have found a method for a diameter-selective removal of metallic single-walled carbon nanotubes (m-SWCNTs) from semiconducting (s-) ones by stirring or sonicating SWCNT powder in tetramethylene sulfone (TMS)/chloroform solution with nitronium hexafluoroantimonate (NO2SbF6: NHFA) and nitronium tetrafluoroborate (NO2BF4: NTFB). Positively charged nitronium ions (NO2+) were intercalated into nanotube bundles, where the intercalation was promoted also by the counterions. Nitronium ions selectively attacked the sidewall of the m-SWCNTs due to the abundant presence of electron density at the Fermi level, thus yielding stronger binding energy as compared to the counterpart s-SWCNTs. The s-SWCNTs were left on the filter after filtration, whereas the m-SWCNTs were disintegrated and drained away as amorphous carbons. The effectiveness of removing m-SWCNTs was confirmed by the resonant Raman spectra and absorption spectra.
我们发现了一种通过在含有六氟锑酸硝鎓(NO2SbF6:NHFA)和四氟硼酸硝鎓(NO2BF4:NTFB)的四亚甲基砜(TMS)/氯仿溶液中搅拌或超声处理单壁碳纳米管(SWCNT)粉末,从半导体性(s-)单壁碳纳米管中直径选择性去除金属性单壁碳纳米管(m-SWCNT)的方法。带正电荷的硝鎓离子(NO2+)插入纳米管束中,抗衡离子也促进了这种插入。由于费米能级处电子密度丰富存在,硝鎓离子选择性地攻击m-SWCNT的侧壁,因此与对应的s-SWCNT相比产生更强的结合能。过滤后,s-SWCNT留在滤纸上,而m-SWCNT则分解并作为无定形碳排出。通过共振拉曼光谱和吸收光谱证实了去除m-SWCNT的有效性。