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Molecularly Engineered Organic-Inorganic Hybrid Perovskite with Multiple Quantum Well Structure for Multicolored Light-Emitting Diodes

机译:用于多量子阱结构的分子工程有机 - 无机杂交钙钛矿,用于多色发光二极管

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Organic-inorganic hybrid perovskites have the potential to be used as a new class of emitters with tunable emission, high color purity and good ease of fabrication. Recent studies have so far been focused on three-dimensional (3D) perovskites, such as CH3NH3PbBr3 and CH3NH3PbI3 for green and infrared emission. Here, we explore a new series of hybrid perovskite emitters with a general formula of (C4H9NH3)2(CH3NH3)n-1PbnI3n+1 (where n?=?1, 2, 3), which possesses a multiple quantum well structure. The quantum well thickness of these materials is adjustable through simple molecular engineering which results in a continuously tunable bandgap and emission spectra. Deep saturated red emission was obtained with a peak external quantum efficiency of 2.29% and a maximum luminance of 214?cd/m(2). Green and blue LEDs were also demonstrated through halogen substitutions in these hybrid perovskites. We expect these results to open up the way towards high performance perovskite LEDs through molecular-structure engineering of these perovskite emitters.
机译:有机无机杂交钙锌矿有可能用作具有可调谐发射,高色纯度和良好的制造的新型发射器。到目前为止,最近的研究已经专注于三维(3D)钙锌矿,例如CH3NH3PBBBR3和CH3NH3PBI3,用于绿色和红外发射。在这里,我们探索新的杂种钙钛矿发射器,其通式(C4H9N3)2(CH 3 NH 3)N-1PBNI3N + 1(其中n?=Δ1,2,3),其具有多量子阱结构。这些材料的量子阱厚度可通过简单的分子工程来调节,从而导致连续调节的带隙和发射光谱。获得深饱和的红色发射,峰值外部量子效率为2.29%,最大亮度为214℃/ m(2)。还通过这些杂交钙钛矿中的卤素取代证明了绿色和蓝色LED。我们预计这些结果通过这些Perovskite发射器的分子结构工程向高性能佩罗夫斯基特LED开辟道路。

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