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Ink Engineering of Transport Layers for 9.5% Efficient All-Printed Semitransparent Nonfullerene Solar Cells

机译:运输层的墨水工程为9.5%高效的全印刷半透明非氟联太阳能电池

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摘要

New polymer donors and nonfullerene acceptors have elevated the performance and stability of solar cells to higher grounds. To achieve their full potential, they require their adaptation to scalable and cost-effective solution manufacturing techniques for large area deposition. Likewise, formulating scalable solution-based transport layer inks that are compatible with the photoactive layer is imperative. This manuscript reports the full integration of solution-based transport layers and electrode alongside a PTB7-Th:IEICO-4F bulk heterojunction in inverted architecture through inkjet-printing, resulting in power conversion efficiencies up to 12.4% opaque devices and 9.5% semitransparent devices with average visible transmittance values of 50.1%, including hole transport layer. The wetting envelope of the highly-hydrophobic photoactive layer alongside the surface energy of candidate solutions and solvents allows the formulation of thick transport layer inks that are compatible with the drop-on-demand inkjet-printing process and yield uniform and homogenous films. Moreover, the surface energy components of the donor and acceptor serves as a fingerprint to assess the vertical stratification of the photoactive layer with the inclusion of different solvents. This methodology addresses a scale-up bottleneck of solution-based transport layers for high-efficiency organic cells, enabling its adaptation to high-throughput techniques including slot-die and roll-to-roll coating.
机译:新的聚合物供体和非氟里娜受体使太阳能电池的性能和稳定性提升到更高的地面。为了实现其充分的潜力,它们需要适应大面积沉积的可扩展和经济效益的解决方案制造技术。同样地,配制与光活性层兼容的基于溶液的传输层油墨是必要的。该稿件报告了通过喷墨印刷的PTB7-第7 -Th:Ieico-4F散装异质结合的基于解决方案的运输层和电极的完全集成,导致电力转换效率高达12.4%的不透明装置和9.5%半透明装置平均可见光透射率值50.1%,包括空穴传输层。高度疏水性光活性层的润湿封套以及候选溶液和溶剂的表面能允许配制厚的传输层油墨,其与按需喷墨印刷过程相容并产生均匀和均匀的薄膜。此外,供体和受体的表面能组分用作指纹,以利用包含不同的溶剂来评估光活性层的垂直分层。该方法解决了用于高效有机电池的基于溶液的传输层的扩大瓶颈,使其适应高通量技术,包括槽模和辊卷涂层。

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