首页> 外文期刊>Progress in photovoltaics >On the role of sodium and copper off‐stoichiometry in Cu (In,Ga)S2 for photovoltaic applications: Insights from the investigation of more than 500 samples
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On the role of sodium and copper off‐stoichiometry in Cu (In,Ga)S2 for photovoltaic applications: Insights from the investigation of more than 500 samples

机译:关于钠和铜在Cu(In,Ga)S2在光伏应用中的作用:来自500多个样品的调查

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Abstract The present article discusses the investigation of CuIn1?xGaxS2 (CIGS) thin films for photovoltaic applications. For decades, a Cu‐rich composition has been used to create solar cells with efficiencies of up to 13.5; however, interest in chalcopyrite sulfide has recently been revived due to its high and adjustable bandgap, making it a serious candidate as a top cell in tandem configurations. Although chalcopyrite selenides share many properties with CIGS thin films, crucial differences have been reported. To further understand these materials, we studied more than 500 samples of absorbers and resulting solar cells. First, we found that the compositional window for obtaining single‐phase CIGS thin films with a three‐stage co‐evaporation process is very narrow. Second, we reported that a combination of low copper content and sodium addition during growth is required to maximize the photoluminescence intensity (i.e., to minimize the absorber‐related open‐circuit voltage losses). Finally, we showed that solar cell performance and stability depend not only on absorber quality but also on phenomena at interfaces (absorber/buffer and grain boundaries). Altogether, we formulate growth recommendations for the manufacture of stable CIGS/CdS solar cells with state‐of‐the‐art efficiency.
机译:摘要 本文讨论了CuIn1?xGaxS2(CIGS)薄膜在光伏领域的应用。几十年来,富铜成分一直被用于制造效率高达13.5%的太阳能电池;然而,由于其高且可调节的带隙,最近对黄铜矿硫化物的兴趣重新燃起,使其成为串联配置中顶级电池的重要候选者。尽管黄铜矿硒化物与CIGS薄膜具有许多共同特性,但已经报道了关键的差异。为了进一步了解这些材料,我们研究了500多个吸收体和太阳能电池样品。首先,我们发现采用三级共蒸发工艺获得单相CIGS薄膜的成分窗口非常窄。其次,我们报告说,在生长过程中需要低铜含量和钠添加的组合来最大化光致发光强度(即,最小化与吸收剂相关的开路电压损耗)。最后,我们证明了太阳能电池的性能和稳定性不仅取决于吸收体的质量,还取决于界面(吸收体/缓冲器和晶界)的现象。总而言之,我们为制造具有最先进效率的稳定CIGS/CdS太阳能电池制定了生长建议。

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