Kim Hoonbae, Lee Jihye, Sohn Sunyoung, Jung Donggeun
J Nanosci Nanotechnol. 2016 May;16(5):5285-90. doi: 10.1166/jnn.2016.12205.
Flexible organic photovoltaic (OPV) cells have drawn extensive attention due to their light weight, cost efficiency, portability, and so on. However, OPV cells degrade quickly due to organic damage by water vapor or oxygen penetration when the devices are driven in the atmosphere without a passivation layer. In order to prevent damage due to water vapor or oxygen permeation into the devices, passivation layers have been introduced through methods such as sputtering, plasma enhanced chemical vapor deposition, and atomic layer chemical vapor deposition (ALCVD). In this work, the structural and chemical properties of Al2O3 films, deposited via ALCVD at relatively low temperatures of 109 degrees C, 200 degrees C, and 300 degrees C, are analyzed. In our experiment, trimethylaluminum (TMA) and H2O were used as precursors for Al2O3 film deposition via ALCVD. All of the Al2O3 films showed very smooth, featureless surfaces without notable defects. However, we found that the plastic flexible substrate of an OPV device passivated with 300 degrees C deposition temperature was partially bended and melted, indicating that passivation layers for OPV cells on plastic flexible substrates need to be formed at temperatures lower than 300 degrees C. The OPV cells on plastic flexible substrates were passivated by the Al2O3 film deposited at the temperature of 109 degrees C. Thereafter, the photovoltaic properties of passivated OPV cells were investigated as a function of exposure time under the atmosphere.
柔性有机光伏(OPV)电池因其重量轻、成本效益高、便携性等优点而受到广泛关注。然而,当器件在没有钝化层的大气中驱动时,由于水蒸气或氧气渗透导致的有机损伤,OPV电池会迅速降解。为了防止水蒸气或氧气渗透到器件中造成损坏,已经通过溅射、等离子体增强化学气相沉积和原子层化学气相沉积(ALCVD)等方法引入了钝化层。在这项工作中,分析了通过ALCVD在109℃、200℃和300℃的相对低温下沉积的Al2O3薄膜的结构和化学性质。在我们的实验中,三甲基铝(TMA)和H2O被用作通过ALCVD沉积Al2O3薄膜的前驱体。所有的Al2O3薄膜都显示出非常光滑、无特征的表面,没有明显的缺陷。然而,我们发现,用300℃沉积温度钝化的OPV器件的塑料柔性基板部分弯曲并熔化,这表明在塑料柔性基板上形成OPV电池的钝化层需要在低于300℃的温度下进行。塑料柔性基板上的OPV电池被在109℃温度下沉积的Al2O3薄膜钝化。此后,研究了钝化后的OPV电池在大气中的光伏性能随暴露时间的变化。