Improving Solar Cell Efficiency through Hydrogen Bonding: A Method for Tuning Active Layer Morphology

被引:69
作者
Aytun, Taner [2 ]
Barreda, Leonel [1 ]
Ruiz-Carretero, Amparo [1 ]
Lehrman, Jessica A. [1 ]
Stupp, Samuel I. [1 ,2 ,3 ,4 ]
机构
[1] Northwestern Univ, Dept Chem, Evanston, IL 60208 USA
[2] Northwestern Univ, Dept Mat Sci & Engn, Evanston, IL 60208 USA
[3] Northwestern Univ, Dept Med, Chicago, IL 60611 USA
[4] Northwestern Univ, Simpson Querrey Inst BioNanotechnol, Chicago, IL 60611 USA
关键词
HIGH FILL FACTORS; CHARGE-TRANSPORT; BANDGAP POLYMER; SMALL MOLECULES; BENZODITHIOPHENE; PHOTOVOLTAICS; ORGANIZATION; AGGREGATION; ENHANCEMENT; DISORDER;
D O I
10.1021/cm503915t
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The morphology of the active layer in organic photovoltais is critical in the optimization of device efficiencies. Most strategies aimed at improving morphology are focused mainly on annealing methods or the use of solvent additives. By using diketopyrrolopyrrole derivatives as donors and [6,6]-phenyl-C71-butyric acid methyl ester as electron acceptors, we report here on the effect of hydrogen bonding on active layer morphology and solar cell efficiency. We specifically compared two asymmetric derivatives, one containing an amide bond capable of forming hydrogen bonds with one containing an ester bond in the same position. Although both molecules have very similar optoelectronic properties, films of the ester revealed greater crystallinity and pi-pi stacking as characterized by grazing incidence X-ray diffraction. In great contrast, active layers formed with the amide derivative formed short fiber-like supramolecular aggregates with much smaller domain sizes and less Order as characterized by atomic force microscopy and X-ray diffraction. Interestingly, devices fabricated with the amide fullerene combination have a greater short circuit current (J(SC)) leading to a 50% increase in power conversion efficiency compared to devices formed with the ester derivative. We conclude that the effective competition of hydrogen bonding over extensive pi-pi stacking results in morphologies that lead to higher photovoltaic efficiencies.
引用
收藏
页码:1201 / 1209
页数:9
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