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首页> 外文期刊>Advanced Materials >A Microchannel-Confined Crystallization Strategy Enables Blade Coating of Perovskite Single Crystal Arrays for Device Integration
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A Microchannel-Confined Crystallization Strategy Enables Blade Coating of Perovskite Single Crystal Arrays for Device Integration

机译:微通道限制的结晶策略可实现钙钛矿单晶阵列的刀片涂层,以实现设备集成

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摘要

Perovskite single crystals (PSCs) possess superior optoelectronic properties compared to their corresponding polycrystalline films, but their applications of PSCs in high-performance, integrated devices are hindered by their heavy thickness and difficulty in scalable deposition. Here, a microchannel-confined crystallization (MCC) strategy to grow uniform and large-area PSC arrays for integrated device applications is reported. Benefiting from the confinement effect of the microchannels, solution flow dynamics is well controlled, and thus uniform deposition of PSC arrays with suitable thickness is achieved, meaning they are applicable for scale-up device applications. The resulting PSCs possess excellent optoelectronic properties in terms of a long carrier lifetime (175 ns) and an ultralow defect density (2 x 10(9) cm(-3)), which are comparable to the corresponding bulk crystals. The unique embedded structure of PSCs within the microchannels allows the construction of a high-integration image sensor. This work paves the way toward high-throughput growth of PSCs for integrated optoelectronic devices.
机译:钙钛矿单晶(PSC)与其相应的多晶膜相比具有优异的光电性能,但由于它们的厚度厚且难以扩展沉积,因此阻碍了它们在高性能,集成器件中的应用。在这里,报道了一种微通道限制结晶(MCC)策略,用于为集成设备应用生长均匀且大面积的PSC阵列。得益于微通道的约束效应,溶液流动动力学得到了很好的控制,因此可以实现具有适当厚度的PSC阵列的均匀沉积,这意味着它们可用于按比例放大的设备应用。所得的PSC在较长的载流子寿命(175 ns)和超低的缺陷密度(2 x 10(9)cm(-3))方面具有出色的光电性能,可与相应的块状晶体相比。微通道内的PSC独特的嵌入式结构允许构建高集成度的图像传感器。这项工作为集成光电设备的PSC高吞吐量增长铺平了道路。

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