Large area solar cells have been processed at the University of Konstanz using a standard industrial type SiN fire-through process on Evergreen Solar's String Ribbon multicrystalline silicon material. After optimisation of the screen printing step and emitter sheet resistivity, efficiencies of 15% have been reached on 8×10 cm2 cells almost independent of material bulk resistivity, which was varied between 1-5 Ωcm. These are the highest large area efficiencies reached on this very promising and cost-effective material using an industrial type process. Cell parameters exhibit a high homogeneity, demonstrating the excellent post-processing material quality. Further improvements within the solar cell process are still possible and could lead to...
ABSTRACT: Record-high efficiency screen-printed 4 cm2 solar cells were achieved on HEM and Baysix ca...
Presented at the 3rd World Conference on Photovoltaic Energy Conversion; Osaka, Japan; May 11-18, 20...
Multi-crystalline silicon has dominated the photovoltaic market in recent years and with advances in...
Large area solar cells have been processed at the University of Konstanz using a standard industrial...
Solar cells have been processed on Edge-defined Film-fed Growth and String Ribbon silicon. Based on ...
This report will detail substantial improvements in each of the task areas. A number of new products...
The Silicon-Film{trademark} process is on an accelerated path to large-scale manufacturing. A key el...
This paper presents an update on current investigations of the hotmelt technology at Fraunhofer ISE....
Enlargement of the wafer size from 15.6 x 15.6 cm2 to 21 x 21 cm2 seems to be an effective cost redu...
ABSTRACT: A simple in-line industrial process has been developed for commercial multicrystalline sil...
This report describes AstroPower`s success in improving its material and processing capabilities dur...
In this work on one hand a process sequence for industrial type multicrystalline silicon solar cells...
This paper presents a method to improve the efficiency of large area screen-printed silicon solar ce...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Presented at the 3rd World Conference on Photovoltaic Energy Conversion; Osaka, Japan; May 11-18, 20...
ABSTRACT: Record-high efficiency screen-printed 4 cm2 solar cells were achieved on HEM and Baysix ca...
Presented at the 3rd World Conference on Photovoltaic Energy Conversion; Osaka, Japan; May 11-18, 20...
Multi-crystalline silicon has dominated the photovoltaic market in recent years and with advances in...
Large area solar cells have been processed at the University of Konstanz using a standard industrial...
Solar cells have been processed on Edge-defined Film-fed Growth and String Ribbon silicon. Based on ...
This report will detail substantial improvements in each of the task areas. A number of new products...
The Silicon-Film{trademark} process is on an accelerated path to large-scale manufacturing. A key el...
This paper presents an update on current investigations of the hotmelt technology at Fraunhofer ISE....
Enlargement of the wafer size from 15.6 x 15.6 cm2 to 21 x 21 cm2 seems to be an effective cost redu...
ABSTRACT: A simple in-line industrial process has been developed for commercial multicrystalline sil...
This report describes AstroPower`s success in improving its material and processing capabilities dur...
In this work on one hand a process sequence for industrial type multicrystalline silicon solar cells...
This paper presents a method to improve the efficiency of large area screen-printed silicon solar ce...
Direct casting of silicon into wafers allows to produce wafers much more cheaply than in traditional...
Presented at the 3rd World Conference on Photovoltaic Energy Conversion; Osaka, Japan; May 11-18, 20...
ABSTRACT: Record-high efficiency screen-printed 4 cm2 solar cells were achieved on HEM and Baysix ca...
Presented at the 3rd World Conference on Photovoltaic Energy Conversion; Osaka, Japan; May 11-18, 20...
Multi-crystalline silicon has dominated the photovoltaic market in recent years and with advances in...