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首页> 外文期刊>IEE Proceedings. Part J >Growth of antimony-based materials in a multiwafer planetary MOVPE-reactor
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Growth of antimony-based materials in a multiwafer planetary MOVPE-reactor

机译:锑基材料在多晶片行星MOVPE反应器中的生长

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Fourtiunction photovoltaic solar cells are expected to reach conversion efficiencies around 40/100. Mechanical stacking of two monolithic tandem cells is suggested. As a top cell the highly developed (GaIn)P/GaAs tandem cell is considered. Device modelling is presented for the bottom cell. An infrared monolithic tandem solar cell is proposed which is a combination of an (AlGa)(AsSb) top cell (E_gap = 1.03 eV) and a GaSb bottom cell based on GaSb as substrate material. The MOVPE growth of GaSb, Ga(AsSb) and (AlGa)Sb in a multiwafer planetary reactor that is suited to large-scale industrial production is reported. Influences of the substrate preparation, orientation of the growth surface, growth temperature and the V-III ratio on material quality are presented. Both hydrogen and nitrogen were employed as the carrier gas in different experiments. The best layers were obtained on (100) substrates oriented 2° toward (111)A, using hydrogen as carrier.
机译:Fourtiunction光伏太阳能电池有望实现约40/100的转换效率。建议将两个整体式串联电池机械堆叠。作为顶部电池,考虑了高度发展的(GaIn)P / GaAs串联电池。为底部单元格提供了设备建模。提出了一种红外整体太阳能电池,它是由(AlGa)(AsSb)顶部电池(E_gap = 1.03 eV)和基于GaSb作为衬底材料的GaSb底部电池组成的。据报道,在适合大规模工业生产的多晶片行星反应堆中,GaSb,Ga(AsSb)和(AlGa)Sb的MOVPE生长。介绍了底物制备,生长表面的取向,生长温度和V-III比对材料质量的影响。在不同的实验中,氢气和氮气都被用作载气。使用氢作为载体,在朝向(111)A方向成2°的(100)基板上获得了最好的层。

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