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Two-Step Patterning of Scalable All-Inorganic Halide Perovskite Arrays

机译:可伸缩全无机卤化物钙钛矿阵列的两步图案化

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摘要

Halide perovskites have many important optoelectronic properties, including high emission efficiency, high absorption coefficients, color purity, and tunable emission wavelength, which makes these materials promising for optoelectronic applications. However, the inability to precisely control large-scale patterned growth of halide perovskites limits their potential toward various device applications. Here, we report a patterning method for the growth of a cesium lead halide perovskite single crystal array. Our approach consists of two steps: (1) cesium halide salt arrays patterning and (2) chemical vapor transport process to convert salt arrays into single crystal perovskite arrays. Characterizations including energy-dispersive X-ray spectroscopy and photoluminescence have been employed to confirm the chemical compositions and the optical properties of the as-synthesized perovskite arrays. This patterning method enables the patterning of single crystal cesium lead halide perovskite arrays with tunable spacing (from 2 to 20 mu m) and crystal size (from 200 nm to 1.2 mu m) in high production yield (almost every pixel in the array is successfully grown with converted perovskite crystals). Our large-scale patterning method renders a platform for the study of fundamental properties and opportunities for perovskite-based optoelectronic applications.
机译:卤化物Perovskites具有许多重要的光电性能,包括高排放效率,高吸收系数,颜色纯度和可调谐发射波长,这使得这些材料对光电应用有前途。然而,无法精确地控制卤化物Perovskites的大规模图案化生长限制了它们对各种装置应用的潜力。在这里,我们报告了一种铯卤化铯钙钙矿单晶阵列的生长方法。我们的方法包括两个步骤:(1)卤化铯盐阵列图案化和(2)化学蒸汽运输过程将盐阵列转化为单晶钙钛矿阵列。已经采用包括能量分散X射线光谱和光致发光的特征来确认化学成分和作为合成的钙钛矿阵列的光学性质。该图案化方法使单晶铯卤化卤玻璃钙钛矿阵列具有可调谐间距(从2至20μm)和晶体尺寸(从200nm至1.2μm)的高产量(阵列中几乎是成功的每个像素成功用转化的钙钛矿晶体生长)。我们的大规模图案化方法使佩洛夫斯基钛矿的光电应用的基本特性和机遇造成了研究的平台。

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