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使用十六烷基三甲基溴化铵修饰的氧化锌提高倒置聚合物太阳能电池的性能

Enhancement of Inverted Polymer Solar Cells Performances Using Cetyltrimethylammonium-Bromide Modified ZnO.

作者信息

Wu Chung-Kai, Sivashanmugan Kundan, Guo Tzung-Fang, Wen Ten-Chin

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan 70101, Taiwan.

Department of Photonics, National Cheng Kung University, Tainan 70101, Taiwan.

出版信息

Materials (Basel). 2018 Mar 4;11(3):378. doi: 10.3390/ma11030378.

Abstract

In this study, the performance and stability of inverted bulk heterojunction (BHJ) polymer solar cells (PSCs) is enhanced by doping zinc oxide (ZnO) with 0-6 wt % cetyltrimethylammonium bromide (CTAB) in the sol-gel ZnO precursor solution. The power conversion efficiency (PCE) of the optimized 3 wt % CTAB-doped ZnO PSCs was increased by 9.07%, compared to a PCE of 7.31% for the pristine ZnO device. The 0-6 wt % CTAB-doped ZnO surface roughness was reduced from 2.6 to 1 nm and the number of surface defects decreased. The X-ray photoelectron spectroscopy binding energies of Zn 2p (1021.92 eV) and 2p (1044.99 eV) shifted to 1022.83 and 1045.88 eV, respectively, which is related to strong chemical bonding via bromide ions (Br) that occupy oxygen vacancies in the ZnO lattice, improving the PCE of PSCs. The concentration of CTAB in ZnO significantly affected the work function of PSC devices; however, excessive CTAB increased the work function of the ZnO layer, resulting from the aggregation of CTAB molecules. In addition, after a 120-hour stability test in the atmosphere with 40% relative humidity, the inverted device based on CTAB-doped ZnO retained 92% of its original PCE and that based on pristine ZnO retained 68% of its original PCE. The obtained results demonstrate that the addition of CTAB into ZnO can dramatically influence the optical, electrical, and morphological properties of ZnO, enhancing the performance and stability of BHJ PSCs.

摘要

在本研究中,通过在溶胶 - 凝胶氧化锌前驱体溶液中用0 - 6 wt%的十六烷基三甲基溴化铵(CTAB)掺杂氧化锌(ZnO),提高了倒置体异质结(BHJ)聚合物太阳能电池(PSC)的性能和稳定性。与原始氧化锌器件7.31%的功率转换效率(PCE)相比,优化后的3 wt% CTAB掺杂氧化锌PSC的PCE提高了9.07%。0 - 6 wt% CTAB掺杂氧化锌的表面粗糙度从2.6纳米降低到1纳米,表面缺陷数量减少。锌2p(1021.92电子伏特)和2p(1044.99电子伏特)的X射线光电子能谱结合能分别移至1022.83和1045.88电子伏特,这与通过占据氧化锌晶格中氧空位的溴离子(Br)形成的强化学键有关,提高了PSC的PCE。氧化锌中CTAB的浓度显著影响PSC器件的功函数;然而,过量的CTAB会因CTAB分子的聚集而增加氧化锌层的功函数。此外,在相对湿度为40%的大气中进行120小时稳定性测试后,基于CTAB掺杂氧化锌的倒置器件保留了其原始PCE的92%,基于原始氧化锌的器件保留了其原始PCE的68%。所得结果表明,在氧化锌中添加CTAB可显著影响氧化锌的光学、电学和形态学性质,提高BHJ PSC的性能和稳定性。

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