激光器
材料科学
薄脆饼
硅
光电子学
遮罩(插图)
共发射极
兴奋剂
制作
太阳能电池
工艺工程
光学
工程类
物理
医学
艺术
替代医学
病理
视觉艺术
作者
D. Kray,Monica Alemán,Andreas Fell,Sybille Hopman,K. Mayer,M. Mesec,Ralph Müller,G. Willeke,Stefan W. Glunz,Bernd Bitnar,D.H. Neuhaus,R. Lüdemann,T. Schlenker,Devon Manz,A. Bentzen,E. Sauar,A. Pauchard,Bernold Richerzhagen
标识
DOI:10.1109/pvsc.2008.4922848
摘要
The introduction of selective emitters underneath the front contacts of solar cells can considerably increase the cell efficiency. Thus, cost-effective fabrication methods for this process step would help to reduce the cost per W p of silicon solar cells. Laser Chemical Processing (LCP) is based on the waterjet-guided laser (LaserMicroJet®) developed and commercialized by Synova S.A., but uses a chemical jet. This technology is able to perform local diffusions at high speed and accuracy without the need of masking or any high-temperature step of the entire wafer. We present experimental investigations on simple device structures to choose optimal laser parameters for selective emitter formation. These parameters are used to fabricate high-efficiency oxide-passivated LFC solar cells that exceed 20% efficiency.
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