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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The green poly-lysine enantiomers as electron-extraction layers for high performance organic photovoltaics
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The green poly-lysine enantiomers as electron-extraction layers for high performance organic photovoltaics

机译:绿色聚赖氨酸对映体作为高性能有机光伏的电子 - 萃取层

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In this study, we first revealed green materials - poly-lysines (poly-l-lysine and poly-l-lysine blend poly-d-lysine) - as electron-extraction layers (EELs) in organic photovoltaics (OPVs). The distinct configurations of poly-lysine enantiomers were verified by conducting zeta potential analysis, and their work function (WF)-tuning capabilities for indium tin oxide (ITO) were affirmed by ultraviolet photoelectron spectroscopy (UPS). These two poly-lysine groups, with different arrangements of the amino groups that built up different surface dipoles on the ITO substrate, altered the surface energy and WF of ITO. Poly-l-lysine optimized the WF of ITO for efficient carrier transport in the OPV device, in the electron transporting layer-free OPV devices, and we observed a high power conversion efficiency (PCE) of 10.01% in the device configuration of ITO/interlayer/BHJ/MoO3/Ag. As the first examination of poly-lysine enantiomers for OPVs, we provided the WF-tuning functions - increasing polarity as an interfacial dipole is formed at the corresponding interface, and discovered a promising interfacial material possessing high efficiency and benefitting from a long-term stability to perform in a stable PCE with about 80% of its original PCE remaining after continuous heat and light treatment for 400 hours.
机译:在这项研究中,首先揭示了绿色材料 - 聚赖氨酸(聚-L-赖氨酸和聚-L-赖氨酸共混物聚合物) - 作为有机光伏(OPV)中的电子提取层(EEL)。通过进行Zeta电位分析来验证聚赖氨酸对映体的不同配置,并通过紫外光电和氧化铟锡(ITO)的其工作功能(WF) - 氧化铟锡(ITO)的能力。这两种聚赖氨酸基团具有在ITO衬底上建立不同的表面偶极子的不同布置,改变了ITO的表面能和WF。 Poly-L-赖氨酸优化了ITO的WF,在OPV器件中有效的载波运输,在电子传输层的OPV器件中,我们观察到ITO的器件配置中的高功率转换效率(PCE)为10.01%/中间层/ BHJ / MOO3 / AG。作为对OPVS的多赖氨酸对映体的第一次检查,我们提供了在相应的界面处形成界面偶极子的WF调谐功能 - 随着界面偶极性的增加,并且发现具有高效率和受益于长期稳定性的有前途的界面材料在稳定的PCE中以稳定的PCE表现在连续的热量和光处理后剩余约80%,持续400小时。

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