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首页> 外文期刊>Progress in photovoltaics >Polycrystalline Silicon Thin-film Solar Cells on Glass by Aluminium-induced Crystallisation and Subsequent Ion-assisted Deposition (ALICIA)
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Polycrystalline Silicon Thin-film Solar Cells on Glass by Aluminium-induced Crystallisation and Subsequent Ion-assisted Deposition (ALICIA)

机译:铝诱导的结晶和随后的离子辅助沉积在玻璃上的多晶硅薄膜太阳能电池(ALICIA)

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摘要

A research project is under way at The University of New South Wales aiming at the realisation of a novel type of poly crystalline silicon thin-film solar cell on glass. The idea is to first create a thin large-grained poly crystalline seed layer on glass by aluminium-induced crystallisation of amorphous silicon" and then to epitaxially thicken the seed layer with ion-assisted deposition. By mid-2003 this ALICIA project had achieved laboratory cells with voltages of up to 163 mV, as reported elsewhere. In the present paper we give an overview of recent progress (improved Si-epitaxy process, unproved control of base doping profile due to the use of phosphorus dopants instead of gallium, hydrogen passivation) that has unproved the voltages of ALICIA solaf cells to 270 mV. Furthermore, the strategy for further voltage improvements is presented. At the present point in time only the voltages of ALICIA cells are known, but obviously solar cells also require current for good efficiency. Hence much improvement in both voltage and current is still needed.
机译:新南威尔士大学正在进行一项研究项目,旨在实现一种新型的玻璃上的多晶硅薄膜太阳能电池。这个想法是首先通过铝诱导的非晶硅结晶在玻璃上创建一个薄的大晶粒多晶种层”,然后通过离子辅助沉积外延使该种层变厚。到2003年中期,这个ALICIA项目已经完成了实验室电压高达163 mV的电池,如其他地方所报道。在本文中,我们概述了最新的进展(改进的Si外延工艺,由于使用磷掺杂剂而不是镓而未控制的基极掺杂分布,氢钝化)。 ),它没有将ALICIA solaf电池的电压提高到270 mV。此外,还提出了进一步改善电压的策略,目前,只有ALICIA电池的电压是已知的,但显然太阳能电池也需要电流才能提高效率因此,仍然需要电压和电流方面的许多改进。

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