Spemann D, Vogt J, Butz T, Oppermann D, Bente K
Nukleare Festkörperphysik, Fakultät für Physik und Geowissenschaften, Universität Leipzig, Linnéstr 5, 04103 Leipzig.
Anal Bioanal Chem. 2002 Oct;374(4):626-30. doi: 10.1007/s00216-002-1484-7. Epub 2002 Aug 22.
Thin layers of ZnS-CuInS(2) mixed crystals (called ZCIS) are promising absorber materials for thin film solar cell applications. The ZCIS-films investigated in this study were grown on (001)GaP, SiO(2) and CeO(2)/Al(2)O(3) with different elemental compositions by Pulsed Laser Deposition (PLD). In order to optimize the sample preparation process a quantitative three-dimensional (i.e. laterally and depth resolved) determination of the compositions and thicknesses of the ZCIS-films is needed. It is demonstrated how this difficult analytical task can be addressed with ion microbeam analysis. For this purpose the films have been analysed non-destructively by means of Rutherford Backscattering Spectrometry (RBS) and Particle Induced X-ray Emission (PIXE) using a 2 MeV He(+) ion microbeam at the high-energy ion nanoprobe LIPSION. A large variation in film thickness caused by particulates deposited on the film was observed. The elemental compositions of the film and the particulates have been determined and compared with the target composition. The deviations found varied substantially for the individual elements. It could be concluded from these measurements, that the quality of the sintered PLD-target is of crucial importance for the roughness of the films. Furthermore concentration-depth-profiles of the individual elements have been derived non-destructively by means of RBS.
硫化锌-铜铟硫(2)混合晶体(称为ZCIS)的薄层是薄膜太阳能电池应用中很有前景的吸收材料。本研究中所研究的ZCIS薄膜通过脉冲激光沉积(PLD)在具有不同元素组成的(001)GaP、SiO(2)和CeO(2)/Al(2)O(3)上生长。为了优化样品制备过程,需要对ZCIS薄膜的成分和厚度进行定量的三维(即横向和深度分辨)测定。本文展示了如何通过离子微束分析来解决这一困难的分析任务。为此,使用高能离子纳米探针LIPSION的2 MeV He(+)离子微束,通过卢瑟福背散射光谱(RBS)和粒子诱导X射线发射(PIXE)对薄膜进行了无损分析。观察到由于沉积在薄膜上的颗粒导致薄膜厚度有很大变化。已确定了薄膜和颗粒的元素组成,并与目标组成进行了比较。发现各元素的偏差差异很大。从这些测量结果可以得出结论,烧结PLD靶的质量对薄膜的粗糙度至关重要。此外,还通过RBS无损得出了各元素的浓度深度分布。