Caselli D A, Ning C Z
School of Electrical, Computer, and Energy Engineering, Arizona State University, Tempe, Arizona 85287, USA.
Opt Express. 2011 Jul 4;19 Suppl 4:A686-94. doi: 10.1364/OE.19.00A686.
In this paper, laterally arranged multiple bandgap (LAMB) solar cells based on CdxPb1-xS alloy nanowires of varying composition on a single substrate are designed to be used together with a dispersive concentrator. Simulation results for a design with six subcells in series connection are presented. The design is based on a unique materials capability achieved in our recent research. An efficiency of 34.9% was obtained for operation without solar concentration, which increased to 40.5%, 41.7%, and 42.7% for concentration ratios of 25, 100, and 240 respectively. The device was also simulated with decreased carrier mobilities to model the possible reduction in absorber conductivity, depending on the nanowire geometry and configuration. For a concentration ratio of unity, decreasing the mobilities to 25% of their original values caused less than a 2.5% absolute drop in efficiency. The LAMB design offers the advantages of an integrated cell platform and the potential for low-cost, high efficiency photovoltaic systems.
在本文中,基于在单个衬底上具有不同组成的CdₓPb₁₋ₓS合金纳米线的横向排列多带隙(LAMB)太阳能电池被设计为与色散聚光器一起使用。给出了具有六个串联子电池的设计的模拟结果。该设计基于我们最近研究中实现的独特材料性能。在没有太阳能聚光的情况下运行时获得了34.9%的效率,对于聚光比分别为25、100和240时,效率提高到了40.5%、41.7%和42.7%。还根据纳米线的几何形状和配置,对降低载流子迁移率的器件进行了模拟,以模拟吸收体电导率可能的降低。对于聚光比为1的情况,将迁移率降低到其原始值的25%导致效率的绝对下降小于2.5%。LAMB设计具有集成电池平台的优点以及低成本、高效率光伏系统的潜力。