Univ. Bordeaux, IMS, UMR 5218 , F-33405 Talence, France.
CNRS, IMS, UMR 5218 , F-33405 Talence, France.
ACS Appl Mater Interfaces. 2015 Nov 18;7(45):25334-40. doi: 10.1021/acsami.5b06475. Epub 2015 Nov 5.
For efficient organic photovoltaic (OPV) solar cells, a low work function electrode is necessary to enhance the built-in voltage of the active layer, thereby improving the overall efficiency. Calcium is often used for this purpose in the laboratory; however, its development on a larger scale is impaired by its high reactivity with oxygen and water and the resulting low stability of solar cells under operation. The influence of a novel interlayer, lanthanum hexaboride (LaB6), on the electronic properties of OPV is studied in this work. Similarly to calcium, when LaB6 is used as an interlayer, it enhances the built-in voltage in the device, leading to a higher fill factor (FF) and optimal open circuit voltage (V(oc)). As a result, optimized LaB6-based devices present significantly improved power conversion efficiencies. More importantly, while calcium/aluminum (Ca/Al) and aluminum (Al) cathodes lose their capacity to enhance the internal electrical field during thermal aging, the LaB6/aluminum (LaB6/Al) electrode remains stable. This remarkable effect results in a highly stable V(oc) and flat-band potential during aging.
为了实现高效的有机光伏(OPV)太阳能电池,需要使用低功函数电极来增强活性层的内置电压,从而提高整体效率。在实验室中,钙通常用于此目的;然而,由于其与氧气和水的高反应性以及由此导致的太阳能电池在运行下的低稳定性,其在更大规模上的开发受到阻碍。本工作研究了新型夹层镧六硼化物(LaB6)对 OPV 电子性能的影响。与钙类似,当 LaB6 用作夹层时,它会增强器件中的内置电压,从而提高填充因子(FF)和最佳开路电压(V(oc))。结果,优化后的基于 LaB6 的器件表现出显著提高的功率转换效率。更重要的是,虽然钙/铝(Ca/Al)和铝(Al)阴极在热老化过程中失去了增强内部电场的能力,但 LaB6/铝(LaB6/Al)电极保持稳定。这种显著的效果导致在老化过程中具有非常稳定的 V(oc)和平带电位。