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首页> 外文期刊>Science Advances >Structural and spectral dynamics of single-crystalline Ruddlesden-Popper phase halide perovskite blue light-emitting diodes
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Structural and spectral dynamics of single-crystalline Ruddlesden-Popper phase halide perovskite blue light-emitting diodes

机译:单晶Ruddlesden-popper相卤化物恒温蓝光二极管的结构和光谱动力学

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摘要

Achieving perovskite-based high–color purity blue-emitting light-emitting diodes (LEDs) is still challenging. Here, we report successful synthesis of a series of blue-emissive two-dimensional Ruddlesden-Popper phase single crystals and their high–color purity blue-emitting LED demonstrations. Although this approach successfully achieves a series of bandgap emissions based on the different layer thicknesses, it still suffers from a conventional temperature-induced device degradation mechanism during high-voltage operations. To understand the underlying mechanism, we further elucidate temperature-induced device degradation by investigating the crystal structural and spectral evolution dynamics via in situ temperature-dependent single-crystal x-ray diffraction, photoluminescence (PL) characterization, and density functional theory calculation. The PL peak becomes asymmetrically broadened with a marked intensity decay, as temperature increases owing to [PbBr 6 ] 4? octahedra tilting and the organic chain disordering, which results in bandgap decrease. This study indicates that careful heat management under LED operation is a key factor to maintain the sharp and intense emission.
机译:实现基于Perovskite的高色纯度蓝色发光发光二极管(LED)仍然具有挑战性。在这里,我们报告成功合成了一系列蓝色发光二维Ruddlesden-popper相单晶及其高色纯度蓝发射的LED演示。尽管这种方法基于不同的层厚度成功实现了一系列带隙排放,但是在高压操作期间仍然存在传统的温度诱导的器件劣化机制。为了理解潜在的机制,我们通过以原位温度依赖性单晶X射线衍射,光致发光(PL)表征和密度泛函理论计算来进一步阐明温度诱导的装置劣化。随着[PBBR 6] 4的温度升高,PL峰值随着强度衰减而变得不对称地扩大。八面体倾斜和有机链排序,导致带隙的减少。本研究表明,在LED操作下仔细的热管理是保持剧烈和强烈排放的关键因素。

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