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具有溶胶-凝胶沉积ZnO和AZO电子传输层的无光照有机光伏器件。

Light-soaking free organic photovoltaic devices with sol-gel deposited ZnO and AZO electron transport layers.

作者信息

Jiang Zenan, Soltanian Saeid, Gholamkhass Bobak, Aljaafari Abdullah, Servati Peyman

机构信息

Department of Electrical and Computer Engineering, University of British Columbia 2332 Main Mall Vancouver BC Canada V6T 1Z4

College of Engineering, King Faisal University Al-Hasa 31982, P. O. Box 400 Saudi Arabia.

出版信息

RSC Adv. 2018 Oct 30;8(64):36542-36548. doi: 10.1039/c8ra07071g. eCollection 2018 Oct 26.

Abstract

This paper investigates light-soaking effects in inverted organic photovoltaic (OPV) devices with zinc oxide (ZnO) and aluminum doped ZnO (AZO) electron transport layers (ETL), which is important for the development of low-cost and stable solar cells. The samples demonstrated high solar harvesting properties with power conversion efficiency up to 3.9%. Air-stability tests of up to 150 days were performed on devices with different Al doping levels. The devices maintained higher than 60% of the initial PCE after 50 days of open-air exposure. The light-soaking mechanism was investigated with experiments and simulations and shown to be eliminated when the Al fraction of the AZO is higher than 4%. The simulated band diagram of the OPV devices indicates that the low carrier density in the ZnO layer by virtue of depletion is the main reason of the light-soaking effect. Doping the ZnO layer as well as exposing the devices under UV irradiation will introduce additional free carriers into the ETL and reduce the width of the depletion region at both sides of the ETL.

摘要

本文研究了具有氧化锌(ZnO)和铝掺杂氧化锌(AZO)电子传输层(ETL)的倒置有机光伏(OPV)器件中的光浸泡效应,这对于低成本和稳定太阳能电池的开发至关重要。样品表现出高太阳能收集特性,功率转换效率高达3.9%。对具有不同Al掺杂水平的器件进行了长达150天的空气稳定性测试。在露天暴露50天后,器件保持高于初始PCE的60%。通过实验和模拟研究了光浸泡机制,结果表明当AZO的Al含量高于4%时,光浸泡效应可消除。OPV器件的模拟能带图表明,由于耗尽,ZnO层中的低载流子密度是光浸泡效应的主要原因。对ZnO层进行掺杂以及在紫外光照射下对器件进行曝光,将向ETL中引入额外的自由载流子,并减小ETL两侧耗尽区的宽度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41d9/9088863/c6924a22a9c9/c8ra07071g-f1.jpg

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