Palgrave Robert G, Parkin Ivan P
Department of Chemistry, University College London, 20 Gordon Street, London, WC1H 0AJ, United Kingdom.
J Am Chem Soc. 2006 Feb 8;128(5):1587-97. doi: 10.1021/ja055563v.
Gold nanoparticle and gold/semiconductor nanocomposite thin films have been deposited using aerosol assisted chemical vapor deposition (CVD). A preformed gold colloid in toluene was used as a precursor to deposit gold films onto silica glass. These nanoparticle films showed the characteristic plasmon absorption of Au nanoparticles at 537 nm, and scanning electron microscopic (SEM) imaging confirmed the presence of individual gold particles. Nanocomposite films were deposited from the colloid concurrently with conventional CVD precursors. A film of gold particles in a host tungsten oxide matrix resulted from co-deposition with [W(OPh)(6)], while gold particles in a host titania matrix resulted from co-deposition with [Ti(O(i)Pr)(4)]. The density of Au nanoparticles within the film could be varied by changing the Au colloid concentration in the original precursor solution. Titania/gold composite films were intensely colored and showed dichromism: blue in transmitted light and red in reflected light. They showed metal-like reflection spectra and plasmon absorption. X-ray photoelectron spectroscopy and energy-dispersive X-ray analysis confirmed the presence of metallic gold, and SEM imaging showed individual Au nanoparticles embedded in the films. X-ray diffraction detected crystalline gold in the composite films. This CVD technique can be readily extended to produce other nanocomposite films by varying the colloids and precursors used, and it offers a rapid, convenient route to nanoparticle and nanocomposite thin films.
已使用气溶胶辅助化学气相沉积(CVD)法沉积了金纳米颗粒和金/半导体纳米复合薄膜。将甲苯中的预制金胶体用作前驱体,以在石英玻璃上沉积金膜。这些纳米颗粒薄膜在537nm处显示出金纳米颗粒特有的等离子体吸收,扫描电子显微镜(SEM)成像证实了单个金颗粒的存在。纳米复合薄膜是由胶体与传统CVD前驱体同时沉积而成的。与[W(OPh)(6)]共沉积得到了氧化钨主体基质中的金颗粒薄膜,而与[Ti(O(i)Pr)(4)]共沉积得到了二氧化钛主体基质中的金颗粒薄膜。薄膜中金纳米颗粒的密度可通过改变原始前驱体溶液中的金胶体浓度来改变。二氧化钛/金复合薄膜颜色很深且呈现二向色性:透射光下为蓝色,反射光下为红色。它们显示出类似金属的反射光谱和等离子体吸收。X射线光电子能谱和能量色散X射线分析证实了金属金的存在,SEM成像显示单个金纳米颗粒嵌入薄膜中。X射线衍射检测到复合薄膜中有结晶金。通过改变所使用的胶体和前驱体,这种CVD技术可以很容易地扩展用于制备其他纳米复合薄膜,并且它为纳米颗粒和纳米复合薄膜提供了一种快速、便捷的制备途径。