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具有基于纳米纤维的光活性层的聚合物太阳能电池的空气稳定性增强。

Enhanced air stability of polymer solar cells with a nanofibril-based photoactive layer.

作者信息

Oh Jin Young, Shin Minkwan, Lee Hyun Woo, Lee Yu-Jeong, Baik Hong Koo, Jeong Unyong

机构信息

Department of Materials Science and Engineering, Yonsei University , 134 Shinchong-dong, Seoul 120-750, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2014 May 28;6(10):7759-65. doi: 10.1021/am501034g. Epub 2014 Apr 16.

Abstract

In spite of the rapid increase in the power conversion efficiency (PCE) of polymer solar cells (PSCs), the poor stability of the photoactive layer in air under sunlight is a critical problem blocking commercialization of PSCs. This study investigates the photo-oxidation behavior of a bulk-heterojunction (BHJ) photoactive film made of single-crystalline poly(3-hexlythiophene) (P3HT) nanofibrils and fullerene derivatives [phenyl-C61-butyric methyl ester (PCBM), indene-C 60 bisadduct (ICBA)]. Because the single-crystalline P3HT nanofibrils had tightly packed π-π stacking, the permeation of oxygen and water into the nanofibrils was significantly reduced. Chemical changes in P3HT were not apparent in the nanofibrils, and hence the air stability of the nanofibril-based BHJ film was considerably enhanced as compared with conventional BHJ films. The chemical changes were monitored by Fourier-transform infrared (FT-IR) spectroscopy, Raman spectroscopy, and UV-vis absorbance. Inverted PSCs made of the nanofibril-based BHJ layer also showed significantly enhanced air stability under sunlight. The nanofibril-based solar cell maintained more than 80% of its initial PCE after 30 days of continuous exposure to sunlight (AM 1.5G, 100 mW/cm(2)), whereas the PCE of the conventional BHJ solar cell decreased to 20% of its initial PCE under the same experimental conditions.

摘要

尽管聚合物太阳能电池(PSC)的功率转换效率(PCE)迅速提高,但在阳光下空气中光活性层稳定性差仍是阻碍PSC商业化的关键问题。本研究考察了由单晶聚(3-己基噻吩)(P3HT)纳米纤维和富勒烯衍生物[苯基-C61-丁酸甲酯(PCBM)、茚-C60双加合物(ICBA)]制成的体异质结(BHJ)光活性薄膜的光氧化行为。由于单晶P3HT纳米纤维具有紧密堆积的π-π堆积,氧气和水向纳米纤维中的渗透显著降低。P3HT中的化学变化在纳米纤维中不明显,因此与传统BHJ薄膜相比,基于纳米纤维的BHJ薄膜的空气稳定性得到了显著提高。通过傅里叶变换红外(FT-IR)光谱、拉曼光谱和紫外可见吸收光谱监测化学变化。由基于纳米纤维的BHJ层制成的倒置PSC在阳光下也显示出显著提高的空气稳定性。在连续暴露于阳光(AM 1.5G,100 mW/cm²)30天后,基于纳米纤维的太阳能电池保持了其初始PCE的80%以上,而在相同实验条件下,传统BHJ太阳能电池的PCE降至其初始PCE的20%。

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