Bera Parthasarathi, Vohs John M
Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6393, USA.
J Chem Phys. 2006 Oct 28;125(16):164713. doi: 10.1063/1.2363186.
The growth and structure of Pd films on ZnO(0001) were investigated using high resolution electron energy loss spectroscopy, x-ray photoelectron spectroscopy, and low energy electron diffraction. Vapor deposited Pd films at 300 K were found to follow a two-dimensional (2D) island growth mode, in which 2D metal islands are formed up to a critical coverage at which point growth occurs primarily in a layer-by-layer fashion on top of the islands. Heating to only 350 K was found to be sufficient to induce partial agglomeration of Pd films into three-dimensional particles. In addition to causing further agglomeration into particles, heating to 700 K resulted in partial reduction of the ZnO surface and the formation of a PdZn alloy.
利用高分辨率电子能量损失谱、X射线光电子能谱和低能电子衍射研究了ZnO(0001)上钯薄膜的生长和结构。发现在300K下气相沉积的钯薄膜遵循二维(2D)岛状生长模式,其中二维金属岛形成直至临界覆盖率,此时生长主要以逐层方式在岛的顶部发生。发现仅加热到350K就足以诱导钯薄膜部分团聚成三维颗粒。加热到700K除了导致进一步团聚成颗粒外,还导致ZnO表面部分还原并形成PdZn合金。