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Periodic Organic–Inorganic Halide Perovskite Microplatelet Arrays on Silicon Substrates for Room‐Temperature Lasing

机译:硅基基板上的周期性有机-无机卤化物钙钛矿微板阵列用于室温下激光发射

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摘要

Organic–inorganic metal halide perovskites have recently demonstrated outstanding efficiencies in photovoltaics as well as highly promising performances for a wide range of optoelectronic applications such as lasing, light emission, optical detectors, and even for radiation detection. Key to the realization of functional perovskite microanosystems on the ubiquitous silicon optoelectronics platform is through sophisticated lithography. Despite the rapid progress made in halide perovskite lasing, direct lithographic patterning of perovskite films to form optical cavities on conventional substrates remains extremely challenging. This study realizes room‐temperature high‐quality factor whispering‐gallery‐mode lasing (Q ≈ 1210) from patterned lead halide perovskite microplatelets fabricated in periodic arrays on silicon substrate with micropatterned BN film as the buffer layer. By varying the size of the platelets, modal selectivity for single mode lasing can be achieved with different cavity sizes or by simply breaking the structural symmetry of the cavity through designing the pattern. Importantly, this work demonstrates a straightforward, versatile bottom‐up scalable strategy to realize high‐quality periodic perovskite arrays with variable cavity sizes for large‐area light‐emitting and optical gain applications.
机译:有机-无机金属卤化物钙钛矿最近在光伏中表现出出色的效率,并在激光,发光,光学检测器甚至辐射检测等广泛的光电应用中具有令人鼓舞的性能。在无处不在的硅光电平台上实现功能钙钛矿微/纳米系统的关键是通过精密的光刻技术。尽管在卤化物钙钛矿激射方面取得了快速的进展,但是钙钛矿膜的直接光刻图案化以在常规基板上形成光学腔仍然极具挑战性。本研究通过以微阵列BN膜作为缓冲层在硅基板上以周期性阵列制造的图案化卤化钙钛矿钙钛矿微片实现了室温高质量因子耳语-画廊模式激光(Q≈1210)。通过改变血小板的大小,可以用不同的腔尺寸或通过设计图案简单地破坏腔的结构对称性来实现单模激光的模态选择性。重要的是,这项工作展示了一种简单,通用的自下而上可扩展的策略,可实现具有可变腔尺寸的高质量周期性钙钛矿阵列,适用于大面积发光和光学增益应用。

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