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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Selective emitter formation with a single screen-printed p-doped paste deposition using out-diffusion in an RTP-step
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Selective emitter formation with a single screen-printed p-doped paste deposition using out-diffusion in an RTP-step

机译:在RTP步骤中使用向外扩散的单丝网印刷p掺杂糊剂沉积形成选择性发射极

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We present a new way to realise a selective emitter structure using a single screen-printed phosphorous paste deposition as dopant source to obtain a doping differential, with rapid thermal diffusion. The heavily doped part of the emitter is situated underneath the deposited phosphorous lines, and the lightly doped emitter in between is obtained via the gas phase, because phosphorous out-diffuses from the paste during the high-temperature step. SIMS profiles show a difference of a factor 4 in magnitude for the surface concentration between the regions underneath and beside the deposited paste. Photovoltaic results show an improvement in efficiency of 0.7% in comparison with the reference cell (homogeneous emitter), due to a 2mA/cm(2) short-circuit current increase. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 3]
机译:我们提出了一种新的方法来实现选择性发射极结构,该结构使用单丝网印刷的磷糊剂沉积作为掺杂剂源来获得具有快速热扩散的掺杂​​差异。发射极的重掺杂部分位于沉积的磷线下方,而中间的轻掺杂发射极则通过气相获得,因为在高温步骤中磷从糊剂中向外扩散。 SIMS轮廓显示沉积糊剂下方和旁边区域之间的表面浓度在大小上的差异为4倍。光伏结果表明,与参考电池(均匀发射极)相比,效率提高了0.7%,这是由于短路电流增加了2mA / cm(2)。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:3]

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