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High-Efficiency Solution-Processed Two-Terminal Hybrid Tandem Solar Cells Using Spectrally Matched Inorganic and Organic Photoactive Materials

机译:高效溶液处理的双端子混合串联太阳能电池使用光谱匹配的无机和有机光活性材料

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摘要

Although the power conversion efficiency (PCE) of inorganic perovskite-based solar cells (PSCs) is considerably less than that of organic-inorganic hybrid PSCs due to their wider bandgap, inorganic perovskites are great candidates for the front cell in tandem devices. Herein, the low-temperature solution-processed two-terminal hybrid tandem solar cell devices based on spectrally matched inorganic perovskite and organic bulk heterojunction (BHJ) are demonstrated. By matching optical properties of front and back cells using CsPbI2Br and PTB7-Th:IEICO-4F BHJ as the active materials, a remarkably enhanced stabilized PCE (18.04%) in the hybrid tandem device as compared to that of the single-junction device (9.20% for CsPbI2Br and 10.45% for PTB7-Th:IEICO-4F) is achieved. Notably, the PCE of the hybrid tandem device is thus far the highest PCE among the reported tandem devices based on perovskite and organic material. Moreover, the long-term stability of inorganic perovskite devices under humid conditions is improved in the hybrid tandem device due to the hydrophobicity of the PTB7-Th:IEICO-4F back cell. In addition, the potential promise of this type of hybrid tandem device is calculated, where a PCE of as much as approximate to 28% is possible by improving the external quantum efficiency and reducing energy loss in the sub-cells.
机译:虽然基于无机钙钛矿的太阳能电池(PSC)的功率转换效率(PCE)显着小于其较宽的带隙,但由于其更宽的带隙,因此无机Perovskites是串联装置中前电池的伟大候选者。这里,基于光谱匹配的无机钙钛矿和有机批量异质结(BHJ)的低温溶液加工的双端杂交串联太阳能电池装置。通过使用CSPBI2BR和PTB7-TH:IEICO-4F BHJ作为活性材料的匹配前和后电池的光学性质,与单接线装置相比,混合串联装置中的显着增强的稳定PCE(18.04%)( CSPBI2BR的9.20%,实现了PTB7-TH:IEICO-4F的10.45%)。值得注意的是,杂交串联装置的PCE是基于钙钛矿和有机材料的报告的串联装置中的最高PCE。此外,由于PTB7-TH的疏水性,在杂交串联装置中,在杂交串联装置中提高了潮湿条件下的无机钙钛矿装置的长期稳定性:IEICO-4F背部细胞。此外,计算这种类型的混合串联装置的潜在承诺,其中通过提高外部量子效率并降低子单元中的能量损失,可以实现与28%近似的PCE一样多。

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