共查询到3条相似文献,搜索用时 0 毫秒
1.
Qing Yang Jian Sha Lei Wang Zhizhong Yuan Deren Yang 《The European Physical Journal B - Condensed Matter and Complex Systems》2007,56(1):35-39
Aligned tetragonal single crystal boron nanorods have been synthesized by
chemical vapor deposition on silicon substrates without any templates. A
thin film of Al was used as catalyst, and the nanorods were synthesized in a
large area. The nanorods have a diameter of 20–50 nm. The SAED and HRTEM
reveal that the nanorods are single crystal in nature and preferentially
grew up along [002]. The optical properties of the nanorods were
investigated. The growth mechanism of the boron nanorods has been discussed. 相似文献
2.
J. C. Arnault L. Demuynck C. Speisser F. Le Normand 《The European Physical Journal B - Condensed Matter and Complex Systems》1999,11(2):327-343
The diamond nucleation has been studied on scratched Si(100) both by surface analyses (XPS, AES, ELS) and microstructural
probes (AFM, SEM). Two pathways for diamond formation and growth are detected: A seeding pathway occurs by direct growth from part of diamond seeds left by the mechanical pretreatment. Not all of these seeds however are
prone to diamond growth as they can be either dissolved or carburized. A nucleation pathway occurs through a stepwise process including the formation of extrinsic (pretreatment) or intrinsic (in situ) nucleation sites, followed by formation of carbon-based precursors. It is believed that nucleation sites could be either
grooves of scratching lines or protrusions produced by etching-redeposition. The size of these protrusions is not larger than
100 nm. On top of these protrusions as well as on the bare substrate, a thin layer of silicon carbide rapidly forms and DLC
carbon likely. This complex process on top of protrusions may constitute carbon-based embryos for further diamond nucleation.
Received 21 December 1998 相似文献
3.
S. Deki Hnin Yu Yu Ko T. Fujita K. Akamatsu M. Mizuhata A. Kajinami 《The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics》2001,16(1):325-328
Au nanoparticles dispersed SiO2-TiO2 composite films have been prepared by a novel wet process, Liquid Phase Deposition (LPD) method. The composite films were
characterized by XRD, XPS, TEM, ICP, SEM and UV-VIS absorption spectroscopy. The results showed that the SiO2-TiO2 composite films containing AuIII and AuI ionic species were co-deposited from a mixed solution of ammonium silicofluoride, ammonium hexafluorotitanate, boric acid
and tetrachloroauric acid. The heat treatment induced the reduction of Au ions and formation of Au nanoparticles in the film.
TEM observation revealed that the Au nanoparticles with 5-10 nm in diameter were found to be dispersed uniformly in the SiO2-TiO2 matrix. The optical absorption band due to the surface plasmon resonance of dispersed Au particles were observed at the wavelength
of 550 nm and shifted toward longer wavelength with increasing heat treatment temperature.
Received 28 November 2000 相似文献