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首页> 外文期刊>Scientific reports. >Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
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Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells

机译:基于钌的金属聚合物在聚合物太阳能电池中作为新的混合太阳能灯收割机嫁接了石墨烯氧化物

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A new class of pyridyl benzimdazole based Ru complex decorated polyaniline assembly (PANI-Ru) was covalently grafted onto reduced graphene oxide sheets (rGO) via covalent functionalization approach. The covalent attachment of PANI-Ru with rGO was confirmed from XPS analysis and Raman spectroscopy. The chemical bonding between PANI-Ru and rGO induced the electron transfer from Ru complex to rGO via backbone of the conjugated PANI chain. The resultant hybrid metallopolymer assembly was successfully demonstrated as an electron donor in bulk heterojunction polymer solar cells (PSCs). A PSC device fabricated with rGO/PANI-Ru showed an utmost ~6 fold and 2 fold enhancement in open circuit potential (Voc) and short circuit current density (Jsc) with respect to the standard device made with PANI-Ru (i.e., without rGO) under the illumination of AM 1.5?G. The excellent electronic properties of rGO significantly improved the electron injection from PANI-Ru to PCBM and in turn the overall performance of the PSC device was enhanced. The ultrafast excited state charge separation and electron transfer role of rGO sheet in hybrid metallopolymer was confirmed from ultrafast spectroscopy measurements. This covalent modification of rGO with metallopolymer assembly may open a new strategy for the development of new hybrid nanomaterials for light harvesting applications.
机译:一类新的吡啶基苯并咪唑基的Ru复合物装饰聚苯胺组件(Pani-Ru)通过共价官能化方法将共价接枝到氧化石墨烯片(RGO)上。从XPS分析和拉曼光谱证实了Pani-Ru与Rgo的共价附着。 Pani-ru和Rgo之间的化学键合诱导通过缀合的Pani链的骨架从Ru复合物到Rgo的电子转移。将所得杂化金属聚合物组件成功作为电子给体在本体异质结聚合物太阳能电池(PSC)中的电子供体。具有Rgo / Pani-Ru制造的PSC器件,在开路电位(VOC)和短路电流密度(JSC)上,具有持续的持续〜6倍,以及用PANI-RU制造的标准装置(即,没有) RGO)在下午1.5?g的照明下。 RGO的优异电子特性显着改善了Pani-ru到PCBM的电子注入,并反过来提高了PSC器件的整体性能。从超速度光谱测量证实了rgo片材在杂交金属化聚合物中的超快激发状态电荷分离和电子转移作用。使用金属聚合体组件的RGO的这种共价修饰可以打开用于开发用于光收集应用的新杂化纳米材料的新策略。

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