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使用基于香豆素的宽带隙供体材料的高效无富勒烯有机太阳能电池。

Efficient Fullerene-Free Organic Solar Cells Using a Coumarin-Based Wide-Band-Gap Donor Material.

作者信息

Pradhan Rashmirekha, Malhotra Prateek, Gupta Gaurav, Singhal Rahul, Sharma Ganesh D, Mishra Amaresh

机构信息

School of Chemistry, Sambalpur University, Jyoti Vihar, Sambalpur 768019, India.

Department of Physics, The LNM Institute of Information Technology (Deemed University), Rupa ki Nagal, Jamdoli, Jaipur, Rajasthan 302031, India.

出版信息

ACS Appl Mater Interfaces. 2020 Sep 16;12(37):41869-41876. doi: 10.1021/acsami.0c12147. Epub 2020 Sep 1.

Abstract

In recent years, tremendous growth has been seen for solution-processed bulk heterojunction solar cells (BHJSCs) using fullerene-free molecular acceptors. Herein, we report the synthesis, characterization of a coumarin-based organic semiconducting molecule C1, and its use in BHJSCs as an electron donor. The compound exhibited an absorption band at 472 nm in chloroform solution with an optical energy gap of 2.33 eV. The HOMO/LUMO energy levels of C1 were found to be ideal for use in BHJSCs. Using PCBM and a fullerene-free acceptor IT-4F, the device generated power conversion efficiencies (PCEs) of 6.17 and 8.31%, respectively. The success of the device based on a fullerene-free acceptor is a result of complementary absorption and well-matched energy levels, resulting in an improved photocurrent and photovoltage in the device. Moreover, ternary solar cells fabricated by employing C1 (20 wt%) as a secondary donor, i.e., an active layer of C1:PM6:IT-4F (0.2:0.8:1.5), generated an enhanced PCE of 11.56% with a high short-circuit current density () of 16.42 mA cm, an open-circuit voltage () of 1.02 V, and a fill factor of 0.69 under 1 sun spectral illumination, which is ∼8% higher than that for the PM6:IT-4F-based binary device (PCE = 10.70%). The increased PCE for the ternary organic solar cell may be related to the efficient exciton generation and its dissociation via Forster resonance energy transfer, which guarantees enough time for an exciton to diffuse toward the D/A interfaces.

摘要

近年来,使用无富勒烯分子受体的溶液处理体异质结太阳能电池(BHJSCs)取得了巨大的发展。在此,我们报告了一种基于香豆素的有机半导体分子C1的合成、表征及其在BHJSCs中作为电子供体的应用。该化合物在氯仿溶液中于472 nm处呈现吸收带,光学能隙为2.33 eV。发现C1的HOMO/LUMO能级非常适合用于BHJSCs。使用PCBM和无富勒烯受体IT-4F,该器件分别产生了6.17%和8.31%的功率转换效率(PCEs)。基于无富勒烯受体的器件取得成功是互补吸收和能级良好匹配的结果,从而提高了器件中的光电流和光电压。此外,通过采用C1(20 wt%)作为第二供体制备的三元太阳能电池,即C1:PM6:IT-4F(0.2:0.8:1.5)的活性层,在1个太阳光谱光照下产生了增强的PCE为11.56%,具有16.42 mA cm的高短路电流密度()、1.02 V的开路电压()和0.69的填充因子,这比基于PM6:IT-4F的二元器件(PCE = 10.70%)高出约8%。三元有机太阳能电池PCE的提高可能与通过福斯特共振能量转移实现的高效激子产生及其解离有关,这保证了激子有足够的时间扩散到D/A界面。

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