Marchal Wouter, Verboven Inge, Kesters Jurgen, Moeremans Boaz, De Dobbelaere Christopher, Bonneux Gilles, Elen Ken, Conings Bert, Maes Wouter, Boyen Hans Gerd, Deferme Wim, Van Bael Marlies, Hardy An
Institute for Materials Research (IMO-IMOMEC), Inorganic and Physical Chemistry, Hasselt University, Martelarenlaan 42, 3500 Hasselt, Belgium.
IMEC vzw, division IMOMEC, Agoralaan Building D, 3590 Diepenbeek, Belgium.
Materials (Basel). 2017 Jan 30;10(2):123. doi: 10.3390/ma10020123.
The identification, fine-tuning, and process optimization of appropriate hole transporting layers (HTLs) for organic solar cells is indispensable for the production of efficient and sustainable functional devices. In this study, the optimization of a solution-processed molybdenum oxide (MoOx) layer fabricated from a combustion precursor is carried out via the introduction of zirconium and tin additives. The evaluation of the output characteristics of both organic photovoltaic (OPV) and organic light emitting diode (OLED) devices demonstrates the beneficial influence upon the addition of the Zr and Sn ions compared to the generic MoOx precursor. A dopant effect in which the heteroatoms and the molybdenum oxide form a chemical identity with fundamentally different structural properties could not be observed, as the additives do not affect the molybdenum oxide composition or electronic band structure. An improved surface roughness due to a reduced crystallinity was found to be a key parameter leading to the superior performance of the devices employing modified HTLs.
识别、微调并优化适用于有机太阳能电池的空穴传输层(HTLs)对于生产高效且可持续的功能性器件而言不可或缺。在本研究中,通过引入锆和锡添加剂,对由燃烧前驱体制备的溶液处理氧化钼(MoOx)层进行了优化。对有机光伏(OPV)和有机发光二极管(OLED)器件的输出特性评估表明,与普通MoOx前驱体相比,添加Zr和Sn离子具有有益影响。由于添加剂不影响氧化钼的组成或电子能带结构,因此未观察到杂原子与氧化钼形成具有根本不同结构性质的化学特性的掺杂效应。发现由于结晶度降低而导致的表面粗糙度改善是采用改性HTLs的器件性能优异的关键参数。