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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Towards photovoltaic windows: scalable fabrication of semitransparent modules based on non-fullerene acceptors via laser-patterning
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Towards photovoltaic windows: scalable fabrication of semitransparent modules based on non-fullerene acceptors via laser-patterning

机译:朝向光伏窗口:通过激光图案化基于非富勒烯受体的半透明模块进行可伸缩制造

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Semitransparent organic photovoltaics (OPV) possess unique properties that make them highly appealing for their integration into semitransparent architectonic elements such as windows or glazings. In order to provide sufficient transparency, non-opaque electrodes and thin photoactive layers are typically used, thus limiting the light-harvesting capacity. This can be partially overcome by using materials that absorb light mostly in the infrared region. On the other hand, the use of scalable techniques for the fabrication of semitransparent devices is often disregarded. In this work, we combine the blue, low-bandgap polymer PBTZT-stat-BDTT-8 with the near-infrared absorbing non-fullerene acceptor 4TICO, adapting the module fabrication to low-cost manufacturing processes that are compatible with large-scale production. Fully solution-processed semitransparent solar cells over 4.7% performance are prepared from non-chlorinated formulations, in air and using scalable techniques such as blade coating. Our prototypes of semitransparent laser-patterned OPV modules exceed 30% of transparency (measured as human perception transmittance, HPT) and yield efficiencies in the range of 4%, geometrical fill factors surpassing 90% and an active area above 1 cm(2). We verify the quality of cell-to-cell interconnection and optimise the geometry of the modules with the help of local optoelectronic imaging techniques. This work highlights the relevance of non-fullerene acceptors with strong absorption in the near-infrared, as they can meet industrial and technical requirements for the upscaling and integration of high-performance semitransparent OPV modules with low production costs.
机译:半透明有机光伏(OPV)具有独特的属性,使其对其集成到窗户或玻璃等半透明建筑元素中的积极呼吸。为了提供足够的透明度,通常使用非不透明电极和薄的光活性层,从而限制了光收获容量。这可以通过使用主要在红外区域中吸收光的材料部分地克服。另一方面,使用用于制造半透明装置的可伸缩技术通常忽略。在这项工作中,我们将蓝色的低带隙聚合物PBTZT-Stat-BDTT-8与近红外吸收非富勒烯受体4TICO相结合,将模块制造与具有大规模生产兼容的低成本制造工艺。完全解决的半透明太阳能电池超过4.7%的性能由非氯化制剂,空气中的使用和使用刀片涂层等可缩放技术制备。我们的半透明激光模式的OPV模块的原型超过透明度的30%(以人类感知透射率,HPT),产量效率在4%的范围内,几何填充因子超过90%和高于1cm以上的有源面积(2)。我们在局部光电成像技术的帮助下验证了单元到单元互连的质量,并优化模块的几何形状。这项工作突出了非富勒烯受体对近红外线的强大吸收的相关性,因为它们可以满足高性能半透明OPV模块的高性能和整合的工业和技术要求,具有较低的生产成本。

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