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Manipulating the crystal structure of a conjugated polymer for efficient sequentially processed organic solar cells

机译:操纵共轭的晶体结构聚合物的高效的顺序处理有机太阳能电池

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摘要

Recently, the sequential (Sq) process, which forms nanoscale network structures from quasi-solid-state inter-diffusion through swelling and annealing, is considered to be one of the most efficient methods for fabricating organic solar cells and blend films. Here, we examined the effect of the crystallinity and orientation of poly(3-hexylthiophene) (P3HT) molecules on the formation of the nanostructure by carrying out a Sq process using various solvents with different boiling points. We showed that the moderate crystallinity promoted suitable inter-diffusion between the donor (P3HT) and acceptor (6,6-pentadeuterophenyl C61 butyric acid methyl ester, PC60BM), and hence was important for achieving high-performance solar cells using Sq processing. Nanostructure formation by inter-diffusion was investigated and visualized by taking a combination of grazing-incidence wide-angle X-ray scattering (GIWAXS) and time-of-flight secondary ion mass spectrometry (ToF-SIMS) measurements. In addition, our Sq-processed solar cell yielded a device efficiency as high as 3.25, and was also impressive because it was made with an eco-friendly solvent and using a short-duration annealing process, in contrast to the conventional BHJ process. The present findings provided advanced insight into the Sq process, and we anticipate this efficacious sequential process to contribute not only to the development of higher-efficiency organic solar cells but also to the fabrication of functional blend films.
机译:最近,顺序(平方)过程,形式纳米网络结构quasi-solid-state inter-diffusion通过肿胀和退火,被认为是一个编造的最有效的方法有机太阳能电池和混合的电影。对结晶度的影响保利(3-hexylthiophene)定位(P3HT)分子纳米结构的形成通过实施一个平方过程使用各种与不同的沸点溶剂。温和的结晶度提拔合适inter-diffusion之间的捐赠(P3HT)和受体([6 6]-pentadeuterophenyl C61丁酸甲酯、PC60BM),因此重要的实现高性能的太阳能细胞用平方处理。形成由inter-diffusion和调查通过结合可视化掠入射广角x射线散射(GIWAXS)和飞行时间二次离子质光谱法(ToF-SIMS)测量。另外,我们Sq-processed太阳能电池产生了设备效率高达3.25%,和也令人印象深刻的,因为它是用一个环保溶剂,使用短期退火过程,形成鲜明对比传统BHJ过程。提供先进的洞察平方的过程,我们预计这个有效的顺序不仅发展做出贡献的过程采用有机太阳能电池也的制造功能混合的电影。

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