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A new simple route to grow Cu(In, Ga)Se-2 thin films with large grains in the co-evaporation process

机译:一种新的简单路线,以在共蒸发过程中生长具有大颗粒的Cu(In,Ga)SE-2薄膜

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摘要

In the conventional three-stage co-evaporation process to grow Cu(In, Ga)Se-2 (CIGS) film, a large grain is achieved by the co-evaporation of Cu and Se on (In, Ga)(2)Se-3 layer at 550 degrees C in the second stage and then a p-type is achieved by the co-evaporation of In, Ga, and Se in the third-stage. We reported a new process where a CIGS film with a large gain and p-type is achieved by evaporation of Cu only in the second stage at 400 degrees C and by the Se annealing in the third stage. In the new process, thermal budget was lowered and the third-stage co-evaporation process was eliminated. It was found that the CIGS gain size increased when the Cu/(In+Ga) ratio was above 0.7 and an addition thin CIGS layer appeared on the CIGS surface. The reaction path with Cu was described in the Cu-In-Se ternary phase diagram. The cell conversion efficiency increased from 9.6 to 15.4% as the Se annealing temperature increased from 400 to 550 degrees C in the third stage, mainly due to the increase of open-circuit voltage and fill factor. Our process demonstrated a new route to grow a CIGS film with a less thermal budget and simpler process in the co-evaporation process.
机译:在常规的三级共蒸发过程中生长Cu(In,Ga)Se-2(CIGS)膜,通过Cu和Se的共蒸发(In,Ga)(2)Se的共蒸发来实现大颗粒-3在第二阶段的550℃下的层,然后通过在第三阶段中的共同蒸发,通过在第三阶段中的共蒸发来实现p型。我们报道了一种新的方法,其中通过仅在400摄氏度的第二阶段蒸发Cu并通过第三阶段的SE退火来实现具有大增益和p型的CIGS膜。在新的过程中,降低了热预算,并消除了第三阶段共蒸发过程。发现当Cu /(In + Ga)的比率高于0.7时,CIGS增益尺寸增加,并且在CIGS表面上出现加成的薄CIGS层。在Cu-In-SE三元相图中描述了与Cu的反应路径。电池转换效率从9.6增加到15.4%,因为SE退火温度在第三阶段的400至550摄氏度上升,主要是由于开路电压的增加和填充因子。我们的进程展示了一种新的途径,以在共蒸发过程中具有较少的热预算和更简单的过程。

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