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Natural biomaterial sarcosine as an interfacial layer enables inverted organic solar cells to exhibit over 16.4% efficiency

机译:天然生物材料肌氨酸作为界面层允许倒有机太阳能电池表现出超过16.4%的效率

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摘要

The natural biomaterial sarcosine as an electron transport layer (ETL) to modify ITO or ITO/ZnO was successfully introduced into inverted organic solar cells (OSCs) with PM6:BTP-BO-4Cl as the active layer. The introduction of sarcosine on the surface of ITO or ITO/ZnO resulted in lower work function (WF) and higher surface energy. The active layers processed on the surfaces of ITO or ITO/ZnO presented a more optimized morphology and a more ordered molecular arrangement after their modification with sarcosine. The introduction of sarcosine as an ETL promoted charge transport and collection in the OSCs. Therefore, the power conversion efficiency (PCE) of the OSCs increased to 13.53% from 3.86% by modifying ITO with sarcosine. The PCE of the OSCs with ZnO as ETLs improved to 16.45% from 14.85% by modifying ZnO with sarcosine. The improved PCEs benefited from the simultaneously improved short-circuit current density (J(SC)), fill factor (FF), and open-circuit voltage (V-OC). Therefore, this work demonstrates that sarcosine has great potential as an ETL to improve the performance of OSCs.
机译:天然生物材料肌氨酸作为一个电子传输层(ETL)修改ITO或ITO /氧化锌被成功引入反向有机吗太阳能电池(osc) PM6: BTP-BO-4Cl活性层。ITO表面或ITO /氧化锌导致低功函数(WF)和较高的表面能。活性层ITO表面或处理ITO /氧化锌提出更优化的形态和更有序的分子后安排修改与肌氨酸。肌氨酸作为一个ETL提升运输和收费osc的集合。转换效率(PCE) osc的增加通过修改ITO从13.53%降至3.86%肌氨酸。通过修改氧化锌从16.45%提高到14.85%肌氨酸。同时改善了短路电流密度(J (SC)),填充因数(FF)开路电压(V-OC)。表明肌氨酸有很大潜力作为一个ETL改善osc的性能。

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