AbstractSimple two-step wet-chemical cleans composed of an oxidizing step with in water dissolved ozone (DIO3) followed by an etching step have been studied for high-efficient hetero-junction silicon solar cell applications. For this purpose textured FZ-Si samples passivated with amorphous silicon were investigated. Especially the effect of metal contaminations located at the crystalline silicon surface on minority carrier lifetime was examined. A relation between minority carrier lifetime and Ca, Cr and Fe as metallic surface contaminations is shown. The results will be compared with those of standard cleaning concepts using different oxidizing solutions such as HCl / H2O2 and NH4OH / H2O2
Optimisation of electronic interface properties of a Si H c Si hetero junction solar cells by wet c...
In this paper, we investigate the impact of a solar cell fabrication process on the properties of th...
Decisive preconditions to the development of economically attractive solar cells are further improve...
AbstractSimple two-step wet-chemical cleans composed of an oxidizing step with in water dissolved oz...
Simple two-step wet-chemical cleans composed of an oxidizing step with in water dissolved ozone foll...
We have performed a systematic variation of the wet chemical oxidation and the subsequent oxide etch...
Essential requirement for the manufacturing of economically viable Si based solar cells is the passi...
H. Angermann , J. Rappich1, L. Korte1, I. Sieber1, E. Conrad1, M. Schmidt1, K. Hübener2, J.Polte2,...
It is well known that gettering and passivation steps during solar cell processing enhance the minor...
Decisive preconditions to the development of economically attractive solar cells are further improve...
The focus of this work is on the characterization of passivated crystalline Si (c-Si) surfaces subje...
The acidic texture bath that is commonly used in crystalline silicon solar cell manufacturing is a m...
Surface charge, surface state density and interface recombination behavior on polished float zone ...
Wet chemical cleaning and smoothing procedures were developed to minimise defect density and recombi...
This work shows an alternative surface cleaning method for c-Si wafers to replace the standard chem...
Optimisation of electronic interface properties of a Si H c Si hetero junction solar cells by wet c...
In this paper, we investigate the impact of a solar cell fabrication process on the properties of th...
Decisive preconditions to the development of economically attractive solar cells are further improve...
AbstractSimple two-step wet-chemical cleans composed of an oxidizing step with in water dissolved oz...
Simple two-step wet-chemical cleans composed of an oxidizing step with in water dissolved ozone foll...
We have performed a systematic variation of the wet chemical oxidation and the subsequent oxide etch...
Essential requirement for the manufacturing of economically viable Si based solar cells is the passi...
H. Angermann , J. Rappich1, L. Korte1, I. Sieber1, E. Conrad1, M. Schmidt1, K. Hübener2, J.Polte2,...
It is well known that gettering and passivation steps during solar cell processing enhance the minor...
Decisive preconditions to the development of economically attractive solar cells are further improve...
The focus of this work is on the characterization of passivated crystalline Si (c-Si) surfaces subje...
The acidic texture bath that is commonly used in crystalline silicon solar cell manufacturing is a m...
Surface charge, surface state density and interface recombination behavior on polished float zone ...
Wet chemical cleaning and smoothing procedures were developed to minimise defect density and recombi...
This work shows an alternative surface cleaning method for c-Si wafers to replace the standard chem...
Optimisation of electronic interface properties of a Si H c Si hetero junction solar cells by wet c...
In this paper, we investigate the impact of a solar cell fabrication process on the properties of th...
Decisive preconditions to the development of economically attractive solar cells are further improve...