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首页> 外文期刊>Angewandte Chemie >Combining Fullerenes and Zwitterions in Non-Conjugated Polymer Interlayers to Raise Solar Cell Efficiency
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Combining Fullerenes and Zwitterions in Non-Conjugated Polymer Interlayers to Raise Solar Cell Efficiency

机译:结合非共轭聚合物中间层中的富勒烯和两封,以提高太阳能电池效率

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摘要

Polymer zwitterions were synthesized by nucleophilic ring-opening of 3,3-(but-2-ene-1,4-diyl)bis(1,2-oxathiolane 2,2-dioxide) (a bis-sultone) with functional perylene diimide (PDI) or fullerene monomers. Integration of these polymers into solar cell devices as cathode interlayers boosted efficiencies of fullerene-based organic photovoltaics (OPVs) from 2.75% to 10.74%, and of non-fullerene-based OPVs from 4.25% to 10.10%, demonstrating the versatility of these interlayer materials in OPVs. The fullerene-containing polymer zwitterion (C-60-PZ) showed a higher interfacial dipole () value and electron mobility than its PDI counterpart (PDI-PZ), affording solar cells with high efficiency. The power of PDI-PZ and C-60-PZ to improve electron injection and extraction processes when positioned between metal electrodes and organic semiconductors highlights their promise to overcome energy barriers at the hard-soft materials interface of organic electronics.
机译:通过用功能性Per enge二酰亚胺的3,3-(2-eNE-1,4-二氧化物)双(1,2-氧代亚烷2,2-二氧化氮)(BIS-SULTONE)的亲核开环合成聚合物两性化。 (PDI)或富勒烯单体。 作为阴极中间层将这些聚合物的整合到太阳能电池装置中,作为阴极夹层的效率从2.75%到10.74%的富勒烯的有机光伏(OPV),非富烯类OPV的效率从4.25%到10.10%,证明了这些中间层的多功能性 OPVS中的材料。 富含富勒烯的聚合物两性离子(C-60-PZ)显示较高的界面偶极子()值和电子迁移率,而不是其PDI对应物(PDI-PZ),其具有高效率的太阳能电池。 PDI-PZ和C-60-PZ的功率改善电子注入和提取过程,当定位在金属电极和有机半导体之间时,它们承诺克服有机电子硬材料界面处的能量屏障。

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