imec , Kapeldreef 75, 3001 Heverlee, Belgium.
ACS Appl Mater Interfaces. 2013 Sep 11;5(17):8505-15. doi: 10.1021/am401933d. Epub 2013 Aug 30.
To achieve organic solar cells with a broadened spectral absorption, we aim to promote the growth of the near-infrared (NIR)-active polymorph of lead phthalocyanine (PbPc) on a relevant electrode for solar cell applications. We studied the effect of different substrate modification layers on PbPc thin film structure as a function of thickness and deposition rate (rdep). We characterized crystallinity and orientation by grazing incidence X-ray diffraction (GIXD) and in situ X-ray reflectivity (XRR) and correlated these data to the performance of bilayer solar cells. When deposited onto a self-assembled monolayer (SAM) or a molybdenum oxide (MoO3) buffer layer, the crystallinity of the PbPc films improves with thickness. The transition from a partially crystalline layer close to the substrate to a more crystalline film with a higher content of the NIR-active phase is enhanced at low rdep, thereby leading to solar cells that exhibit a higher maximum in short circuit current density (JSC) for thinner donor layers. The insertion of a CuI layer induces the formation of strongly textured, crystalline PbPc layers with a vertically homogeneous structure. Solar cells based on these templated donor layers show a variation of JSC with thickness that is independent of rdep. Consequently, without decreasing rdep we could achieve JSC=10 mA/cm2, yielding a bilayer solar cell with a peak external quantum efficiency (EQE) of 35% at 900 nm, and an overall power conversion efficiency (PCE) of 2.9%.
为了实现光谱吸收范围更广的有机太阳能电池,我们旨在促进铅酞菁(PbPc)近红外(NIR)活性多晶型体在相关电极上的生长,以应用于太阳能电池。我们研究了不同基底修饰层对 PbPc 薄膜结构的影响,作为厚度和沉积速率(rdep)的函数。我们通过掠入射 X 射线衍射(GIXD)和原位 X 射线反射率(XRR)对结晶度和取向进行了表征,并将这些数据与双层太阳能电池的性能相关联。当沉积在自组装单层(SAM)或氧化钼(MoO3)缓冲层上时,PbPc 薄膜的结晶度随厚度的增加而提高。在低 rdep 下,从靠近基底的部分结晶层到具有更高 NIR 活性相含量的更结晶膜的转变得到增强,从而导致具有更薄施主层的短路电流密度(JSC)更高的太阳能电池。插入碘化亚铜(CuI)层会诱导形成具有垂直均匀结构的强烈织构化、结晶性 PbPc 层。基于这些模板施主层的太阳能电池显示出与厚度相关的 JSC 变化,与 rdep 无关。因此,在不降低 rdep 的情况下,我们可以实现 JSC=10 mA/cm2,从而获得具有 900nm 时外部量子效率(EQE)峰值为 35%的双层太阳能电池,以及整体功率转换效率(PCE)为 2.9%。