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首页> 外文期刊>ACS applied materials & interfaces >Optimization of the Energy Level Alignment between the Photoactive Layer and the Cathode Contact Utilizing Solution Processed Hafnium Acetylacetonate as Buffer Layer for Efficient Polymer Solar Cells
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Optimization of the Energy Level Alignment between the Photoactive Layer and the Cathode Contact Utilizing Solution Processed Hafnium Acetylacetonate as Buffer Layer for Efficient Polymer Solar Cells

机译:高效乙酰太阳能丙酮Photo作为缓冲层的光敏层与阴极接触利用溶液处理的能级对准的优化

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摘要

The insertion of an appropriate interfacial buffer layer between the photoactive layer and the contact electrodes makes a great impact on the performance of polymer solar cells (PSCs). Ideal interfacial buffer layers could minimize the interfacial traps and the interfacial barriers caused by the incompatibility between the photoactive layer and the electrodes. In this work, we utilized solution-processed hafnium(IV) acetylacetonate (Hf(acac)(4)) as an effective cathode buffer layer (CBL) in PSCs to optimize the energy level alignment between the photoactive layer and the cathode contact, with the short-circuit current density (J(sc)), open-circuit voltage (Voc), and fill factor (FF) all simultaneously improved with Hf(acac)(4) CBL, leading to enhanced power conversion efficiencies (PCEs). Ultraviolet photoemission spectroscopy (UPS) and scanning Kelvin probe microscopy (SKPM) were performed to confirm that the interfacial dipoles were formed with the same orientation direction as the built-in potential between the photoactive layer and Hf(acac)(4) CBL, benefiting the exciton separation and electron transport/extraction. In addition, the optical characteristics and surface morphology of the Hf(acac)(4) CBL were also investigated.
机译:在光敏层和接触电极之间插入适当的界面缓冲层会对聚合物太阳能电池(PSC)的性能产生重大影响。理想的界面缓冲层可以使由光敏层和电极之间的不相容性引起的界面陷阱和界面障碍最小化。在这项工作中,我们利用溶液处理的乙酰丙酮ha(IV)(Hf(acac)(4))作为PSC中的有效阴极缓冲层(CBL),以优化光敏层与阴极触点之间的能级对齐, Hf(acac)(4)CBL同时改善了短路电流密度(J(sc)),开路电压(Voc)和填充因子(FF),从而提高了功率转换效率(PCE)。进行了紫外光发射光谱(UPS)和扫描开尔文探针显微镜(SKPM)确认界面偶极子的形成方向与光敏层和Hf(acac)(4)CBL之间的内在电势相同。激子分离和电子传输/提取。此外,还研究了Hf(acac)(4)CBL的光学特性和表面形态。

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