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首页> 外文期刊>ACS applied materials & interfaces >In Situ Inkjet Printing of the Perovskite Single-Crystal Array-Embedded Polydimethylsiloxane Film for Wearable Light-Emitting Devices
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In Situ Inkjet Printing of the Perovskite Single-Crystal Array-Embedded Polydimethylsiloxane Film for Wearable Light-Emitting Devices

机译:原位喷墨印刷钙钛矿单晶阵列嵌入的聚二甲基硅氧烷膜,用于可穿戴发光器件

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摘要

Metal halide perovskites are promising light-emitting materials for applications such as wearable lighting devices and flat panel displays because of their high photoluminescence efficiency, high color purity, and facile solution processability. However, the intrinsic ambient instability and crystal friability issues have fundamentally hindered the practical applications of perovskites. Here, we solve this problem through a liquid to liquid self-encapsulation inkjet-printing technique. Perovskite inks are directly inkjet-printed into the liquid polydimethylsiloxane (PDMS) precursor to in situ form the self-encapsulation perovskite single-crystal-embedded PDMS structure. We show that the space-confined effect of the liquid PDMS precursor can significantly retard the perovskite crystallization process and promote the embedded growth of perovskite single crystals in PDMS. Benefiting from the sealing function of PDMS, the printed perovskite single crystals show excellent ambient stability and flexibility. Furthermore, we demonstrate that wafer-scale air-stable and flexible perovskite fluorescent patterns can be produced in PDMS by direct inkjet printing, which is cost-effective and free of complex microfabrication processes. This method provides a facile approach to scalable fabrication of air-stable and wearable perovskite fluorescent patterns, which will be of great significance for potential application in perovskite light-emitting diode display.
机译:金属卤化物佩罗夫斯基酯是具有可穿戴照明装置和平板显示器等应用的发光材料,因为它们的光致发光效率高,色纯度高,溶液加工性。然而,内在的环境不稳定和晶体余损问题从根本上阻碍了佩洛夫斯基斯的实际应用。在这里,我们通过液体来解决液体自封装喷墨印刷技术的解决问题。 Perovskite油墨直接喷涂到液体聚二甲基硅氧烷(PDMS)前体以原位形成自封钙钛矿单晶体嵌入的PDMS结构。我们表明,液体PDMS前体的空间限制效果可以显着阻碍钙钛矿结晶过程,并促进PDMS中钙钛矿单晶的嵌入生长。受益于PDMS的密封功能,印刷的钙钛矿单晶显示出优异的环境稳定性和柔韧性。此外,我们证明晶片级空气稳定和柔性钙钛矿荧光图案可以通过直接喷墨印刷在PDMS中产生,这是具有成本效益和不含复杂的微制造工艺。该方法提供了一种可扩展制造空气稳定和可穿戴钙钛矿荧光图案的容易的方法,这对于佩罗夫斯基钛石发光二极管显示器的潜在应用具有重要意义。

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