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Highly efficient room-temperature phosphorescence and afterglow luminescence from common organic fluorophores in 2D hybrid perovskites

机译:二维杂化钙钛矿中常见有机荧光团的高效室温磷光和余辉发光

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摘要

Regardless of rapid development of organic room-temperature phosphorescence (RTP) originating from phosphors in crystals, highly efficient and persistent RTP from common fluorophores is very rare. Herein, 1,8-naphthalimide (NI), a common organic fluorophore, is doped into organic cations of 2D layered organic/inorganic hybrid perovskites (OIHPs) to yield thin films and powders with yellow RTP of NI in air. The triplet excitons of NI are mainly derived from Wannier excitons of inorganic perovskite through energy transfer (ET) for films, and from singlet excitons of NI through intersystem crossing (ISC) for powder. Consequently, the quantum yield (ΦP), lifetime (τ) and color of RTP can be tuned by changing the fluorophore and halide in the perovskites, as well as their solid morphology. A white emission, comprising the blue one from the perovskite and yellow RTP (ΦP = 25.6%, τ = 6.3 ms) from NI, is obtained in Br-based OIHPs in powder. Cl-based OIHPs exhibit fluorescence/phosphorescence dual emission in thin films, and yellow afterglow phosphorescence in powders (ΦP = 56.1%, τ = 35 ms). The unique performance of the OIHPs with RTP can make them widely applicable in the field of information technology as security ink, and white and afterglow LEDs as single luminescent materials.
机译:不管源自晶体中磷光体的有机室温磷光(RTP)的迅速发展,来自普通荧光团的高效且持久的RTP都是非常罕见的。在此,将1,8-萘二甲酰亚胺(NI)(一种常见的有机荧光团)掺杂到2D层有机/无机杂化钙钛矿(OIHP)的有机阳离子中,以在空气中产生具有黄色RTP NI的薄膜和粉末。 NI的三重态激子主要通过膜的能量转移(ET)衍生自无机钙钛矿的Wannier激子,而粉末则通过体系间交叉(ISC)衍生自NI的单重态激子。因此,可以通过改变钙钛矿中的荧光团和卤化物及其固体形态来调整RTP的量子产率(ΦP),寿命(τ)和颜色。在粉末状的Br基OIHP中获得白色发射,包括钙钛矿的蓝色发射和NI的黄色RTP(ΦP= 25.6%,τ= 6.3 ms)。基于Cl的OIHP在薄膜中表现出荧光/磷光双重发射,而在粉末中呈现出黄色余辉磷光(ΦP= 56.1%,τ= 35 ms)。具有RTP的OIHP的独特性能使其可以广泛地用作安全墨水等信息技术,以及作为单一发光材料的白色和余辉LED。

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