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在环境空气中一步法厘米级生长用于彩色绘画的亚100纳米钙钛矿单晶阵列。

One-step Centimeter-Scale Growth of Sub-100-nm Perovskite Single-Crystal Arrays in Ambient Air for Color Painting.

作者信息

Zhang Guannan, Sun Zhao, Gan Zhuofei, Liang Chuwei, Chen Liyang, Mo Hongbo, Jiang Yuanzhi, Yuan Mingjian, Djurišić Aleksandra B, Kim Ji Tae, Li Wen-Di

机构信息

Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, SAR, 999077, P. R. China.

Department of Physics, The University of Hong Kong, Hong Kong, SAR, 999077, P. R. China.

出版信息

Adv Sci (Weinh). 2025 Mar;12(12):e2415105. doi: 10.1002/advs.202415105. Epub 2025 Feb 3.

Abstract

Halide perovskite single crystals have demonstrated enormous potential for next-generation integrated optoelectronic devices. However, there is a lack of a facile method to realize the controllable growth of large-scale, high-quality, and high-resolution perovskite single crystal arrays on diverse types of substrates, which hinders their application in practical scenarios. Here, a one-step wettability-guided blade coating approach is reported for the rapid in situ crystallization of large-scale, multicolor, and sub-100 nm perovskite single-crystal arrays in the ambient environment. By this strategy, the physical dimensions of perovskite single crystals can be precisely regulated from 90 to 260 nm, with a size variation coefficient < 10% and an area of over 900 mm. All three typicalhalogen perovskites for multi-color luminescence, CsPbX (X = Cl, Br, I) and their mixtures (Cl/Br or Br/I systems), are appliable to this fabrication process through the demonstration of complex RGB patterns with remarkable photoluminescence properties. Moreover, various rigid substrates such as silicon oxide (SiO), silicon (Si), and glass can also be used to construct the wettability-constrast templates where perovskite crystal nucleate and grow. After that, the perovskite single-crystal arrays or complex patterns can be transferred onto flexible substrates, for instance, COC. This method combines convenient solution processing with conventional photolithography to prepare the high-resolution, large-area, and superior-quality perovskite single crystal arrays in a high-throughput manner, showing great potential in the integration of perovskite nano-optoelectronic devices and chips.

摘要

卤化物钙钛矿单晶在下一代集成光电器件方面已展现出巨大潜力。然而,目前缺乏一种简便方法来实现在多种类型衬底上大规模、高质量且高分辨率的钙钛矿单晶阵列的可控生长,这阻碍了它们在实际场景中的应用。在此,报道了一种一步润湿性引导的刮涂法,用于在环境氛围中快速原位结晶出大规模、多色且亚100纳米的钙钛矿单晶阵列。通过该策略,钙钛矿单晶的物理尺寸可精确调控至90至260纳米,尺寸变化系数<10%,面积超过900平方毫米。用于多色发光的所有三种典型卤化物钙钛矿CsPbX(X = Cl、Br、I)及其混合物(Cl/Br或Br/I体系),通过展示具有卓越光致发光特性的复杂RGB图案,均可应用于该制备工艺。此外,各种刚性衬底,如氧化硅(SiO)、硅(Si)和玻璃,也可用于构建钙钛矿晶体成核和生长的润湿性对比模板。之后,钙钛矿单晶阵列或复杂图案可转移到柔性衬底上,例如环烯烃共聚物(COC)。该方法将便捷的溶液处理与传统光刻技术相结合,以高通量方式制备高分辨率、大面积且高质量的钙钛矿单晶阵列,在钙钛矿纳米光电器件与芯片的集成方面展现出巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6447/11948079/0cd65b81f692/ADVS-12-2415105-g002.jpg

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