Large-scale synthesis and HRTEM analysis of single-walled B- and N-doped carbon nanotube bundles

被引:198
作者
Golberg, D [1 ]
Bando, Y [1 ]
Bourgeois, L [1 ]
Kurashima, K [1 ]
Sato, T [1 ]
机构
[1] Natl Inst Res Inorgan Mat, Tsukuba, Ibaraki 3050044, Japan
关键词
doped carbons; carbon nanotubes; transmission electron microscopy (TEM); electron energy loss spectroscopy (EELS); microstructure;
D O I
10.1016/S0008-6223(00)00058-0
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Bundles of B- and N-doped single-walled carbon nanotubes (SWNTs) containing up to similar to 10 at% B and up to similar to 2 at% N were synthesized at high yields under thermo-chemical treatment of pure C SWNT bundles and B2O3 in a flowing nitrogen atmosphere. The bundles were characterized by means of high-resolution transmission electron microscopy and electron energy loss spectroscopy. The effects of synthesis temperature (1503-1773 K) and time (30-240 min) on the B and N contents and yield of the SWNT bundles were determined. The maximum yield of the B- and N-doped SWNT bundles was obtained under synthesis at 1553 K over 30 min. Atomic structure and morphology of individual SWNTs in the bundles, in particular, packing of doped SWNTs, helicity distribution, encapsulation of fullerene-like clusters, diameter and shell number variations were studied. The synthesized SWNTs in the bundles were stacked in a honeycomb array with the uniform inter-tube spacing of similar to 0.3 nm. No preferable orientation for the graphene-like tubular shells was found, i.e. both zigzag and armchair edges were observed with approximately equal proportions. Frequently, diameter increase took place for the outer tubes in a bundle and for isolated SWNTs. C-based or BN-based fullerene-like encapsulates were observed in individual SWNTs. Carbon oxidation by the B2O3 vapor and B and N substitution for C is thought to underlie the doping of C SWNTs. The substitution reaction temperature-time limits with respect to the morphological stability of B- and N-doped SWNT bundles are finally elucidated (C) 2000 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:2017 / 2027
页数:11
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