Thin nanostructured perovskite films for high performance photo-electronic applications (Conference Presentation)

Cheolmin Park
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Abstract

Ordered nanostructured crystals of thin perovskites films are of great interest to researchers because of the dimensional-dependence of their photoelectronic properties for developing the perovskites with novel properties. In this presentation, both top-down and bottom-up approaches for fabricating nanostructured perovskite films are demonstrated. First, a variety of micro/nanopatterns of a perovskite film are fabricated by either microimprinting or transfer-printing a thin spin-coated precursor film in soft-gel state with a topographically pre-patterned polymer mold, followed by thermal treatment for complete conversion of the precursor film to a perovskite one. Second, we also demonstrate a simple and robust route, involving the controlled crystallization of the perovskites templated with a self-assembled block copolymer (BCP), for fabricating nanopatterned perovskite films with various shapes and nanodomain sizes. When the precursor ion solution of a perovskite and poly(styrene)-block-poly(2-vinylpyridine) (PS-b-P2VP) was spin-coated on the substrate, a nanostructured BCP was developed by microphase separation. Spontaneous crystallization of the precursor ions preferentially coordinated with the P2VP domains yielded ordered nanocrystals with various nanostructures. The nanopatterned perovskites showed significantly enhanced photoluminescence (PL) with high resistance to both humidity and heat due to geometrically confining crystals in and passivation with the P2VP chains. The self-assembled perovskite films with high PL performance provided a facile control of color coordinates by color conversion layers in blue-emitting devices for cool-white emission.
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高性能光电应用的纳米钙钛矿薄膜(会议报告)
钙钛矿薄膜的有序纳米结构晶体是研究人员非常感兴趣的,因为它们的光电子性质的尺寸依赖于开发具有新性质的钙钛矿。在本报告中,演示了自顶向下和自底向上制备纳米结构钙钛矿薄膜的方法。首先,通过微压印或转移印刷,用地形预图案聚合物模具将一层薄的自旋涂层前驱体膜制成软凝胶状态,然后通过热处理将前驱体膜完全转化为钙钛矿膜,从而制备出钙钛矿膜的各种微/纳米图案。其次,我们还展示了一种简单而可靠的方法,包括用自组装嵌段共聚物(BCP)模板化钙钛矿的控制结晶,用于制造具有各种形状和纳米畴尺寸的纳米图案钙钛矿薄膜。将钙钛矿-聚苯乙烯-嵌段-聚(2-乙烯基吡啶)(PS-b-P2VP)前驱体离子溶液自旋涂覆在衬底上,通过微相分离制备了纳米结构的BCP。前驱体离子与P2VP结构域优先配位的自发结晶产生了具有不同纳米结构的有序纳米晶体。由于晶体在P2VP链上的几何限制和P2VP链的钝化作用,纳米钙钛矿的光致发光(PL)性能显著增强,具有较高的耐湿热性能。具有高PL性能的自组装钙钛矿薄膜为冷白发射蓝光器件中的颜色转换层提供了方便的颜色坐标控制。
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