Patel Jay B, Tiwana Priti, Seidler Nico, Morse Graham E, Lozman Owen R, Johnston Michael B, Herz Laura M
Department of Physics, Clarendon Laboratory , University of Oxford , Parks Road , Oxford OX1 3PU , United Kingdom.
Merck Chemicals Ltd., Chilworth Technical Centre, University Parkway , Southampton SO16 7QD , United Kingdom.
ACS Appl Mater Interfaces. 2019 Jun 19;11(24):21543-21551. doi: 10.1021/acsami.9b04828. Epub 2019 Jun 6.
Organic photovoltaics are a sustainable and cost-effective power-generation technology that may aid the move to zero-emission buildings, carbon neutral cities, and electric vehicles. While state-of-the-art organic photovoltaic devices can be encapsulated to withstand air and moisture, they are currently still susceptible to light-induced degradation, leading to a decline in the long-term efficiency of the devices. In this study, the role of ultraviolet (UV) radiation on a multilayer organic photovoltaic device is systematically uncovered using spectral filtering. By applying long-pass filters to remove different parts of the UV portion of the AM1.5G spectrum, two main photodegradation processes are shown to occur in the organic photovoltaic devices. A UV-activated process is found to cause a significant decrease in the photocurrent across the whole spectrum and is most likely linked to the deterioration of the charge extraction layers. In addition, a photodegradation process caused by UV-filtered sunlight is found to change the micromorphology of the bulk heterojunction material, leading to a reduction in photocurrent at high photon energies. These findings strongly suggest that the fabrication of inherently photostable organic photovoltaic devices will require the replacement of fullerene-based electron transporter materials with alternative organic semiconductors.
有机光伏是一种可持续且具有成本效益的发电技术,有助于向零排放建筑、碳中和城市和电动汽车迈进。虽然最先进的有机光伏器件可以进行封装以抵御空气和湿气,但它们目前仍然容易受到光致降解的影响,导致器件的长期效率下降。在本研究中,利用光谱滤波系统地揭示了紫外线(UV)辐射对多层有机光伏器件的作用。通过应用长波滤光片去除AM1.5G光谱中紫外线部分的不同部分,结果表明在有机光伏器件中发生了两个主要的光降解过程。发现一个紫外线激活过程会导致整个光谱的光电流显著下降,并且很可能与电荷提取层的劣化有关。此外,还发现由经过紫外线过滤的阳光引起的光降解过程会改变本体异质结材料的微观形态,导致高光子能量下的光电流降低。这些发现强烈表明,制造本质上光稳定的有机光伏器件将需要用替代有机半导体取代基于富勒烯的电子传输材料。