Klinke Christian, Delvigne Erik, Barth Johannes V, Kern Klaus
Institut de Physique des Nanostructures, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
J Phys Chem B. 2005 Nov 24;109(46):21677-80. doi: 10.1021/jp054110+.
We have studied nickel, gold, and ferritin coatings on catalytically grown multiwall carbon nanotubes as well as the generation of secondary nanotubes by resubmitting the decorated nanotubes to the chemical vapor deposition process. Nickel layers sputtered on nanotubes show a stronger interaction with the nanotube walls than gold coatings. At ambient temperature this results in a metal film that is more homogeneous for Ni than for Au. Surface mass transport at elevated temperatures leads to a transformation of the coating to nanoscale clusters on the nanotube surface. The resulting Au clusters are spherelike with a very small contact area with the nanotube whereas the Ni clusters are stretched along the tube axis and have a large contact area. Secondary nanotubes were established by growing nanotubes directly on the walls of primary nanotubes. Thin Ni layers or ferritin served as catalysts. We compared the field emission properties of samples with and without secondary nanotubes. The presence of secondary nanotubes enhances the field emission substantially.
我们研究了催化生长的多壁碳纳米管上的镍、金和铁蛋白涂层,以及通过将修饰后的纳米管重新进行化学气相沉积过程来生成二次纳米管。溅射在纳米管上的镍层与纳米管壁的相互作用比金涂层更强。在环境温度下,这导致镍的金属膜比金的更均匀。高温下的表面质量传输导致涂层在纳米管表面转变为纳米级团簇。生成的金团簇呈球形,与纳米管的接触面积非常小,而镍团簇则沿管轴拉伸且接触面积较大。通过在初级纳米管的壁上直接生长纳米管来制备二次纳米管。薄镍层或铁蛋白用作催化剂。我们比较了有无二次纳米管的样品的场发射特性。二次纳米管的存在显著增强了场发射。