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Electrospun Conjugated Polymer/Fullerene Hybrid Fibers:Photoactive Blends Conductivity through Tunneling-AFM Light Scatteringand Perspective for Their Use in Bulk-Heterojunction Organic SolarCells

机译:电纺共轭聚合物/富勒烯杂化纤维:光敏混合物通过隧道原子力显微镜(AFM)的电导率光散射及其在本体-异质结有机太阳能中的应用前景细胞

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摘要

Hybrid conjugated polymer/fullerene filaments based on MEH-PPV/PVP/PCBM were prepared by electrospinning, and their properties were assessed by scanning electron, atomic and lateral-force, tunneling, and confocal microscopies, as well as by attenuated-total-reflection Fourier transform infrared spectroscopy, photoluminescence quantum yield, and spatially resolved fluorescence. Highlighted features include the ribbon shape of the realized fibers and the persistence of a network serving as a template for heterogeneous active layers in solar cell devices. A set of favorable characteristics is evidenced in this way in terms of homogeneous charge-transport behavior and formation of effective interfaces for diffusion and dissociation of photogenerated excitons. The interaction of the organic filaments with light, exhibiting specific light-scattering properties of the nanofibrous mat, might also contribute to spreading incident radiation across the active layers, thus potentially enhancing photovoltaic performance. This method might be applied to other electron donor–electron acceptor material systems forthe fabrication of solar cell devices enhanced by nanofibrillar morphologiesembedding conjugated polymers and fullerene compounds.
机译:通过静电纺丝制备了基于MEH-PPV / PVP / PCBM的杂化共轭聚合物/富勒烯长丝,并通过扫描电子,原子力和侧向力,隧穿和共聚焦显微镜以及衰减的全反射来评估其性能。傅里叶变换红外光谱,光致发光量子产率和空间分辨荧光。突出的特征包括已实现的纤维的带状形状以及用作太阳能电池设备中异质有源层模板的网络的持久性。以这种方式在均匀电荷传输行为和形成光生激子的扩散和离解的有效界面方面证明了一组有利的特性。有机细丝与光的相互作用表现出纳米纤维垫的特定光散射特性,也可能有助于将入射辐射散布到整个活性层上,从而潜在地增强了光伏性能。该方法可能适用于其他电子供体-电子受体材料系统纳米纤维形态增强太阳能电池装置的制造嵌入共轭聚合物和富勒烯化合物。

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