AbstractThis work evaluates the application of Quasi-Monocrystalline silicon (QM-Si) wafers on the conventional structure of silicon solar cells textured by an alkaline solution to generate random pyramids. Although most areas of QM-Si wafers are <100> orientated by using a seeded-grown and directional-solidification process, there are still some none-<100> orientated areas randomly distributed on the wafers. These areas stay more planar, featuring worse reflectance and light trapping. Furthermore, series resistance (Rs) mapping on the final cells shows that these areas also have a higher local Rs. Our experiments and analysis show that the higher local Rs is mainly due to the poor Ag/Si contacts according to the results of our TLM measurem...
We compare the electrical properties of p-type and n-type industrially grown High Performance (HP) m...
AbstractThis paper presents a novel method to measure the local thickness of silicon wafers spatiall...
Presented at the 21st European Photovoltaic Solar Energy Conference and Exhibition; Dresden, Germany...
AbstractThis work evaluates the application of Quasi-Monocrystalline silicon (QM-Si) wafers on the c...
Most industrial monocrystalline silicon wafer (mono-Si) solar cells are metallised by screen printin...
Multicrystalline p-type wafers from 100% UMG-Si feedstock were used for two cell processes. The best...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
In this paper, contact resistance of monocrystalline silicon solar cells was optimized by the variat...
This work presents the results of a detailed series resistance characterization of silicon solar cel...
AbstractScreen printed front side contacts of textured, mono-crystalline p-type silicon solar cells ...
Mono-crystalline Si solar cell based on screen-printed front side metallization is the most widely u...
Mono-crystalline Si solar cell based on screen-printed front side metallization is the most widely u...
We compare the electrical properties of p-type and n-type industrially grown High Performance (HP) m...
AbstractThis paper presents a novel method to measure the local thickness of silicon wafers spatiall...
Presented at the 21st European Photovoltaic Solar Energy Conference and Exhibition; Dresden, Germany...
AbstractThis work evaluates the application of Quasi-Monocrystalline silicon (QM-Si) wafers on the c...
Most industrial monocrystalline silicon wafer (mono-Si) solar cells are metallised by screen printin...
Multicrystalline p-type wafers from 100% UMG-Si feedstock were used for two cell processes. The best...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
This paper focuses on examining the characteristic analysis of the textured and diffused silicon waf...
In this paper, contact resistance of monocrystalline silicon solar cells was optimized by the variat...
This work presents the results of a detailed series resistance characterization of silicon solar cel...
AbstractScreen printed front side contacts of textured, mono-crystalline p-type silicon solar cells ...
Mono-crystalline Si solar cell based on screen-printed front side metallization is the most widely u...
Mono-crystalline Si solar cell based on screen-printed front side metallization is the most widely u...
We compare the electrical properties of p-type and n-type industrially grown High Performance (HP) m...
AbstractThis paper presents a novel method to measure the local thickness of silicon wafers spatiall...
Presented at the 21st European Photovoltaic Solar Energy Conference and Exhibition; Dresden, Germany...