| Literature DB >> 20596377 |
Lijie Luo1, Libin Mo, Zhangfa Tong, Yongjun Chen.
Abstract
In this study, a novel and facile approach for the synthesis ofEntities:
Year: 2009 PMID: 20596377 PMCID: PMC2894111 DOI: 10.1007/s11671-009-9325-7
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1aLow-magnification SEM image of the product, showing the large quantity of the 1D product grown on the stainless steel substrate. The inset is the high-magnification cross-sectional image of some nanotubes, illustrating the hollow structure.bHigh-magnification image ofa, indicating the bamboo-like structure and high purity of the nanotubes.canddThe secondary electron and back scattering electronic (BSE) SEM images of the same area of the product
Figure 2aTEM image of a nanotube. The inset is the EDX spectrum of the nanotube.bTEM image shows a catalyst particle attached at the end of a nanotube. The inset is the EDX spectrum of the particle
Figure 3aHRTEM image of nanotube wall and the corresponding FFT ED pattern (inset).bHRTEM image of a joint between the wall and compartment and the corresponding FFT ED pattern (inset).canddEELS spectra taken from the nanotube wall and the compartment, respectively, revealing the dominating composition of B, C, and N elements in the wall and compartment
Figure 4Elemental maps of a nanotube, implying the uniform distribution of the B, C, and N species in the nanotube
Figure 5The schematic diagram of the B–C–N nanotube growth on the stainless steel substrate