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Tandem stacking structure for polymer solar cells by using semi-transparent electrodes

机译:通过使用半透明电极的聚合物太阳能电池串联堆叠结构

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To increase the absorption of sunlight in polymer solar cells a large active layer thickness is desired. This, however, is limited by the short charge carrier diffusion lengths in the active organic materials. Efficient light harvesting can be achieved in organic solar cells by using a tandem structure. However, fabricating a tandem structure for polymer solar cells presents its own difficulties. Since the polymer film is solution processed, spin-coating multiple layers in tandem can result in significant damage to the underlying layers. This problem can be overcome by fabricating separate PV cells and stacking them in tandem. Here, we report a multiple-device stacked structure where two polymer photovoltaic cells are stacked together with the help of a multi-layer semi-transparent electrode, made of lithium fluoride (LiF)/aluminum (Al)/gold (Au) metal layers. The semi-transparent electrode is used as the top contact in the bottom cell to efficiently transmit the unabsorbed photons to the upper cell. Maximum transparency of up to 80% is achieved for the semi-transparent cathode. In the stacked structure, the open circuit voltage or the short circuit current are twice those of a subcell depending on the serial or parallel connection between the subcells. As a result, power conversion efficiency of up to 2.6% is achieved, which is double than that of a single cell.
机译:为了增加聚合物太阳能电池中阳光的吸收,需要大的有源层厚度。然而,这受到活性有机材料中的短电荷载流子扩散长度的限制。通过使用串联结构,可以在有机太阳能电池中实现高效的光学收获。然而,制造用于聚合物太阳能电池的串联结构呈现自身困难。由于聚合物薄膜是溶液加工,因此串联的旋涂多层可能导致下层的显着损害。通过制造单独的光伏电池并串联堆叠它们可以克服该问题。在这里,我们报告了一种多器件堆叠结构,其中两个聚合物光伏电池源于多层半透明电极的帮助,由氟化锂(LiF)/铝(Al)/金(Au)金属层制成。半透明电极用作底部电池中的顶部接触,以有效地将未吸收的光子传递给上部电池。半透明阴极可以实现高达80%的最大透明度。在堆叠结构中,根据子单元之间的串行或并行连接,开路电压或短路电流是子单元的两倍。结果,实现了高达2.6%的功率转换效率,其比单个细胞的双倍。

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