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Room temperature synthesis of ultra-small, near-unity single-sized lead halide perovskite quantum dots with wide color emission tunability, high color purity and high brightness

机译:室温合成超小,近统一的单一尺寸卤化铅钙钛矿量子点,具有宽的颜色发射可调性,高色纯度和高亮度

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摘要

Phosphor with extremely narrow emission line widths, high brightness, and wide color emission tunability in visible regions is required for display and lighting applications, yet none has been reported in the literature so far. In the present study, single-sized lead halide perovskite (APbX(3); A = CH3NH3 and Cs; X = Cl, Br, and I) nanocrystalline (NC) phosphors were achieved for the first time in a one-pot reaction at room temperature (25 degrees C). The size-dependent samples, which included four families of CsPbBr3 NCs and exhibited sharp excitonic absorption peaks and pure band gap emission, were directly obtained by simply varying the concentration of ligands. The continuity of the optical spectrum can be successively tuned over the entire UV-visible spectral region (360-610 nm) by preparing CsPbCl3, CsPbI3, and CsPb(Y/Br)(3) (Y = Cl and I) NCs with the use of CsPbBr3 NCs as templates by anion exchange while maintaining the size of NCs and high quantum yields of up to 80%. Notably, an emission line width of 10-24 nm, which is completely consistent with that of their single particles, indicates the formation of single-sized NCs. The versatility of the synthetic strategy was validated by extending it to the synthesis of single-sized CH3NH3PbX3 NCs by simply replacing the cesium precursor by the CH3NH3X precursor.
机译:在显示和照明应用中需要具有极窄的发射线宽度,高亮度以及在可见光区域具有宽的颜色发射可调性的磷光体,但是迄今为止,在文献中还没有报道过这种磷光体。在本研究中,单晶卤化钙钛矿型铅(APbX(3); A = CH3NH3和Cs; X = Cl,Br和I)是第一次在一个锅法中获得纳米晶体(NC)荧光粉。室温(25摄氏度)。通过简单地改变配体的浓度就可以直接获得尺寸依赖的样品,该样品包括四个CsPbBr3 NC家族,并表现出尖锐的激子吸收峰和纯带隙发射。通过制备CsPbCl3,CsPbI3和CsPb(Y / Br)(3)(Y = Cl和I)NC,可以在整个UV-可见光谱区域(360-610 nm)上连续调整光谱的连续性。通过阴离子交换使用CsPbBr3 NC作为模板,同时保持NC的尺寸和高达80%的高量子产率。值得注意的是,10-24 nm的发射线宽度与其单个粒子的发射线宽度完全一致,表明形成了单个尺寸的NC。通过简单地将铯前体替换为CH3NH3X前体,将合成策略扩展到单一尺寸CH3NH3PbX3 NC的合成,从而验证了该合成策略的多功能性。

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