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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Electrospun nanofibers with dual plasmonic-enhanced luminescent solar concentrator effects for high-performance organic photovoltaic cells
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Electrospun nanofibers with dual plasmonic-enhanced luminescent solar concentrator effects for high-performance organic photovoltaic cells

机译:具有双等离子体增强发光太阳能聚光器效应的静电纺纳米纤维,用于高性能有机光伏电池

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We fabricated dual functional electrospun (ES) nanofibers by a coaxial electrospinning technique for enhancing the organic photovoltaic (OPV) device efficiency. The nanofibers contained poly[2,7-(9,9-dihexylfluorene)-alt-4,7-(2,1,3-benzothiadiazole)] (PFBT) nanoparticles as the luminescent solar concentrator (LSC) and Ag nanoparticles for the surface plasmon resonance (SPR) effect. Aligned-and crossed-fiber architecture patterns were fabricated to compare the effects of the architecture on the OPV efficiency. The plasmonic-enhanced LSC ES nanofibers with crosslinked poly(methacrylic acid) could be directly integrated into the conventional OPV configuration without sacrificing the coverage area of the active layer. In addition, the in situ reduction of Ag nanoparticles simultaneously enhanced the exciton generation of PFBT and the active materials with the SPR effect. The dual functional ES nanofibers with a crossed-pattern embedded into OPV devices provided significant light harvesting through down conversion and enhanced exciton generation. They led to PCE values of 4.11 and 7.12% for P3HT (poly(3-hexylthiophene)) : PC61BM ([6,6]-phenyl C-61-butyric acid methyl ester) and PTB7 (polythieno[3,4-b]-thiophene-co-benzodithiophene) : PC71BM ([6,6]-phenyl C-71-butyric acid methyl ester) ([6,6]-phenyl) photovoltaic cells, respectively, which are 18% enhancements compared to their parent devices. This interface-modification approach using plasmonic-enhanced LSC ES nanofibers provides a new approach for enhancing the OPV device performance.
机译:我们通过同轴电纺技术制造了双功能电纺(ES)纳米纤维,以提高有机光伏(OPV)器件的效率。纳米纤维包含聚[2,7-(9,9-二己基芴)-alt-4,7-(2,1,3-苯并噻二唑)](PFBT)纳米粒子作为发光太阳能集中器(LSC),以及Ag纳米粒子用于表面等离子体共振(SPR)效应。制作了对齐和交叉光纤的架构模式,以比较架构对OPV效率的影响。具有交联聚(甲基丙烯酸)的等离激元增强的LSC ES纳米纤维可以直接集成到传统的OPV配置中,而不会牺牲有源层的覆盖面积。另外,Ag纳米颗粒的原位还原同时增强了PFBT和具有SPR效应的活性材料的激子生成。具有交叉图案的双功能ES纳米纤维嵌入到OPV设备中,通过向下转换和增强的激子产生,可提供大量的光收集。它们导致P3HT(聚(3-己基噻吩))的PCE值分别为4.11和7.12%:PC61BM([6,6]-苯基C-61-丁酸甲酯)和PTB7(聚噻吩并[3,4-b] -噻吩-共苯并二噻吩):PC71BM([6,6]-苯基C-71-丁酸甲酯)([6,6]-苯基)光电电池,与它们的母设备相比提高了18% 。这种使用等离子体增强的LSC ES纳米纤维的界面修改方法为增强OPV器件性能提供了一种新方法。

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