Suppr超能文献

通过间歇喷雾热解技术修饰ZnO薄膜实现富勒烯有机光伏电池稳定性的显著提升

Significant Stability Improvement of Fullerene Organic Photovoltaics via ZnO Film Modification through the Intermittent Spray Pyrolysis Technique.

作者信息

Moustafa Enas, Marsal Lluis F, Pallarès Josep

机构信息

Department of Electrical Electronic Engineering and Automatic, Universitat Rovira i Virgili, 43007 Tarragona, Spain.

出版信息

ACS Appl Energy Mater. 2022 Apr 25;5(4):4390-4403. doi: 10.1021/acsaem.1c03994. Epub 2022 Mar 29.

Abstract

Morphological control of the layers within the bulk heterojunction organic photovoltaics (BHJ-OPVs) is a key feature that governs their performance. In the present work, we demonstrate that zinc oxide-ZnO-interlayers sprayed via the intermittent spray pyrolysis technique, employing a low-concentration precursor solution, can yield inverted BHJ-OPVs as efficient as the standard reported ones using the conventional laboratory-scale spin-coating technique. However, we record a pioneer stability behavior of the fabricated inverted fullerene organic photovoltaics (iF-OPVs) with various sprayed ZnO conditions. Thus, after optimizing the sprayed ZnO interfacial layer morphology for the inverted PTB7-Th:PCBM devices, by carefully inspecting the interdependence between the sprayed ZnO thin film morphology and the figures of merit of the optimized iF-OPVs, we conducted a distinct analysis on the optical and electronic properties of the fresh and degraded devices using external quantum efficiency measurements and impedance spectroscopy. Hence, we showed that the most proper ZnO microstructural morphology was obtained by spraying 25 running cycles (25R). Remarkably, we observed that 25R-ZnO-based iF-OPV devices showed a stunning stability behavior and maintained 85% of their initial power conversion efficiency even after 16.7 months without encapsulation in a dry nitrogen glovebox, demonstrating an excellent shelf stability. Accordingly, this approach might facilitate the scalability of inverted OPVs for industrial production visibility.

摘要

本体异质结有机光伏电池(BHJ - OPV)中各层的形态控制是决定其性能的关键因素。在本工作中,我们证明了通过间歇喷雾热解技术,使用低浓度前驱体溶液喷涂的氧化锌(ZnO)中间层,能够制备出与采用传统实验室规模旋涂技术制备的标准倒置BHJ - OPV效率相当的倒置BHJ - OPV。然而,我们记录了在不同喷涂ZnO条件下制备的倒置富勒烯有机光伏电池(iF - OPV)的一种前所未有的稳定性表现。因此,在优化倒置PTB7 - Th:PCBM器件的喷涂ZnO界面层形态后,通过仔细研究喷涂ZnO薄膜形态与优化后的iF - OPV的品质因数之间的相互依存关系,我们利用外量子效率测量和阻抗谱对新鲜器件和降解器件的光学和电学性质进行了独特的分析。结果表明,通过喷涂25个运行周期(25R)可获得最适宜的ZnO微观结构形态。值得注意的是,我们观察到基于25R - ZnO的iF - OPV器件表现出惊人的稳定性,即使在干燥氮气手套箱中未封装的情况下放置16.7个月后,仍能保持其初始功率转换效率的85%,展现出优异的储存稳定性。因此,这种方法可能有助于提高倒置OPV在工业生产中的可扩展性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2dae/9045677/3ff38e4fa945/ae1c03994_0002.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验