Inkjet Printing Efficient Defined‐Pixel Matrix Perovskite Light‐Emitting Diodes with a Polar Polymer Modification Layer

Junjie Wang, Danyang Li, Yunpeng Luo, Jian Wang, Junbiao Peng
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引用次数: 9

Abstract

Perovskite light‐emitting diodes (PeLEDs) for full‐color displays based on inkjet printing technology are increasingly attractive. For potential applications, fabricating high‐quality perovskite films with defined‐pixel sizes is crucially important. The key issue is how to control the contact properties between the perovskite ink and a hole transport layer (HTL). In this study, a novel strategy is proposed by using the poly[(9,9‐bis(3′‐((N,N‐dimethyl)‐N‐ethylammonium)‐propyl)‐2,7‐fluorene)‐alt‐2,7‐(9,9‐dioctylfluorene)] dibromide (PFN‐Br) polar polymer to modify the HTL surface, instead of conventional O2 plasma method. The PFN‐Br can enhance the surface energy of HTLs, including PVK, Poly‐TPD, TFB, etc., and improve the wettability of perovskite inks on the HTL due to its polar quaternary ammonium groups. Besides, the PFN‐Br acts as the easier nucleation to induce a tiny crystallization of perovskites. On the other hand, the diphenyl phosphate liver (DPA) is first used to mix in perovskite inks to optimize the perovskite film phase distribution and the elimination of uncoordinated Pb2+, resulting from interactions between PEA+ and DPA, Pb2+ and DPA, respectively. As a result, a defined‐pixel matrix green quasi‐2D PeLED with the peak external quantum efficiency over 10% via inkjet printing technique is achieved, which is the most efficient matrix green PeLEDs fabricated by inkjet printing technique so far.
具有极性聚合物修饰层的高效定义像素矩阵钙钛矿发光二极管喷墨打印
基于喷墨打印技术的全彩色显示用钙钛矿发光二极管(PeLEDs)越来越有吸引力。对于潜在的应用,制造具有定义像素尺寸的高质量钙钛矿薄膜至关重要。关键问题是如何控制钙钛矿油墨与空穴传输层(html)之间的接触特性。在这项研究中,提出了一种新的策略,即使用聚[(9,9‐双(3′‐((N,N‐二甲基)‐N‐乙基铵)‐丙基)‐2,7‐芴]‐alt‐2,7‐(9,9‐二辛基芴)‐二溴(PFN‐Br)极性聚合物来修饰HTL表面,而不是传统的氧等离子体方法。PFN‐Br可以提高HTL (PVK、Poly‐TPD、TFB等)的表面能,并通过其极性季铵基团提高钙钛矿油墨在HTL上的润湿性。此外,PFN‐Br更容易成核,诱导钙钛矿的微小结晶。另一方面,首先将二苯基磷酸肝(DPA)掺入钙钛矿油墨中,优化钙钛矿膜相分布,消除PEA+与DPA、Pb2+与DPA相互作用导致的不配位Pb2+。实验结果表明,采用喷墨打印技术制备出了峰值外量子效率超过10%的定像素矩阵绿色准二维ped,这是迄今为止采用喷墨打印技术制备的效率最高的矩阵绿色ped。
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