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深入研究具有微观结构控制的聚合物:富勒烯共混物中的电荷产生。

A close look at charge generation in polymer:fullerene blends with microstructure control.

机构信息

Institute of Chemical Sciences & Engineering, Ecole Polytechnique Fédérale de Lausanne (EPFL) , SB ISIC GR-MO, Station 6, CH-1015 Lausanne, Switzerland.

出版信息

J Am Chem Soc. 2015 Mar 4;137(8):2908-18. doi: 10.1021/ja510032x. Epub 2015 Feb 18.

Abstract

We reveal some of the key mechanisms during charge generation in polymer:fullerene blends exploiting our well-defined understanding of the microstructures obtained in pBTTT:PCBM systems via processing with fatty acid methyl ester additives. Based on ultrafast transient absorption, electro-absorption, and fluorescence up-conversion spectroscopy, we find that exciton diffusion through relatively phase-pure polymer or fullerene domains limits the rate of electron and hole transfer, while prompt charge separation occurs in regions where the polymer and fullerene are molecularly intermixed (such as the co-crystal phase where fullerenes intercalate between polymer chains in pBTTT:PCBM). We moreover confirm the importance of neat domains, which are essential to prevent geminate recombination of bound electron-hole pairs. Most interestingly, using an electro-absorption (Stark effect) signature, we directly visualize the migration of holes from intermixed to neat regions, which occurs on the subpicosecond time scale. This ultrafast transport is likely sustained by high local mobility (possibly along chains extending from the co-crystal phase to neat regions) and by an energy cascade driving the holes toward the neat domains.

摘要

我们揭示了在利用脂肪酸甲酯添加剂进行加工的 pBTTT:PCBM 体系中,通过我们对微结构的明确理解,在聚合物:富勒烯混合物中产生电荷的一些关键机制。基于超快瞬态吸收、电吸收和荧光上转换光谱,我们发现激子通过相对相纯的聚合物或富勒烯域的扩散限制了电子和空穴转移的速率,而在聚合物和富勒烯分子混合的区域(例如,在 pBTTT:PCBM 中,富勒烯插在聚合物链之间的共晶相)中则会发生快速电荷分离。此外,我们还证实了纯相区域的重要性,因为纯相区域对于防止束缚电子-空穴对的复合至关重要。最有趣的是,我们使用电吸收(斯塔克效应)特征,直接观察到空穴从混合区域向纯相区域的亚皮秒级迁移。这种超快输运可能是由高局部迁移率(可能沿着从共晶相延伸到纯相区域的链)和能量级联驱动空穴向纯相区域的输运维持的。

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