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Conjugated thiophene dendrimer with an electron-withdrawing core and electron-rich dendrons : how the molecular structure affects the morphology and performance of dendrimer:fullerene photovoltaic devices

机译:共轭噻吩树枝状聚合物与吸电子核和富电子树枝状分子:分子结构如何影响树枝状聚合物:富勒烯光伏器件的形态和性能

摘要

The combination of electron-rich and electron-poor moieties in conjugated molecules is frequently utilized in order to red shift the absorption spectrum and improve photon harvesting in bulk heterojunction photovoltaic devices. In this study we characterize a conjugated thiophene dendrimer that has an electron-withdrawing core and electron-rich dendrons in order to investigate the effects of this design approach on the salient properties that influence the performance of photovoltaic devices with this dendrimer donor. Beside the absorption onset, these properties are the morphology of dendrimer:fullerene films and the dynamics of photoinduced carrier generation and loss. For comparison we also characterize a control dendrimer with the same structure but without the electron-withdrawing core. In addition to lowering the band gap by ca. 0.5 eV, the electron-withdrawing core also planarizes the dendrimer resulting in enhanced order in bulk heterojunction films. We observe longer photocarrier lifetimes in this ordered structure compared to the films of the predominantly amorphous control. The characterization of dendrimer:fullerene bulk heterojunction photovoltaic devices shows no voltage loss despite the decreased absorption onset. The properties of the device are consistent with the improved photocarrier lifetimes, but they are limited by a low short-circuit photocurrent density. We attribute this to electron confinement in the core that hinders transfer to the fullerene acceptor.
机译:共轭分子中富电子部分和贫电子部分的组合经常用于在主体异质结光伏器件中红移吸收光谱并改善光子收集。在这项研究中,我们表征了具有吸电子核和富电子树枝状分子的共轭噻吩树枝状聚合物,以研究这种设计方法对影响该树枝状聚合物供体的光伏器件性能的显着性能的影响。除了吸收开始,这些性质还包括树枝状大分子:富勒烯薄膜的形态以及光诱导载流子产生和损失的动力学。为了比较,我们还表征了具有相同结构但没有吸电子核的对照树枝状聚合物。除了将带隙减小约。 0.5 eV时,吸电子核还使树枝状聚合物平坦化,从而导致整体异质结薄膜的顺序增强。与主要为非晶质的薄膜相比,我们在这种有序结构中观察到更长的光子寿命。尽管吸收开始减少,但树枝状聚合物:富勒烯本体异质结光伏器件的表征没有显示电压损失。器件的性能与改善的光载流子寿命相一致,但受到短路光电流密度低的限制。我们将此归因于电子限制在核中,阻碍了向富勒烯受体的转移。

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