聚合金属卤化物的多阳离子工程使单一过渡金属的可调多色发射成为可能。

Shun-Shun Li, Pengfei Cheng, Huaxin Liu, Juntao Li, Jianyong Liu, Junsheng Chen, Kaifeng Wu
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引用次数: 0

摘要

零维金属卤化物已经成为开发发光材料的通用平台,但从含有单一类型金属的材料中实现可调谐甚至多色发射已被证明是极具挑战性的。在这里,我们利用最近开发的聚合物金属卤化物的“结构公差”,将单个金属的两个不同的配位单元集成到材料中,从而实现单相金属卤化物的高度可调光学特性。通过调控聚合体的位阻,可以实现溴化锰的绿色、红色或双色发射,这源于溴化锰四面体向八面体的可控转化。这种设计原理进一步扩展到聚合卤化铜,其中广泛的自捕获激子发射来自不同的铜碘多面体,允许发射颜色线性可调,从蓝色到黄色,包括纯白光,通过调整组成,激发波长,或温度。本研究为利用金属元素固有的配位多样性对金属卤化物的光学性质进行简单而精确的调制开辟了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polycation Engineering in Polymeric Metal Halides Enables Tunable and Multicolor Emission from Single Transition-Metals.

Zero-dimensional metal halides have emerged as a versatile platform for the development of light-emitting materials, but achieving tunable or even multicolor emission from a material containing a single type of metal has proven highly challenging. Here, we leverage the "structural tolerance" of recently-developed polymeric metal halides to integrate two distinct coordination units of a single metal into a material, thereby achieving highly tunable optical properties in single-phase metal halides. By manipulating the steric hindrance of polycations, facilely adjustable green, red or bicolor emission can be realized in manganese bromides, which originates from controllable transformation from manganese-bromine tetrahedra into octahedra. This design principle is further extended to polymeric copper halides, wherein broad self-trapped exciton emissions derived from distinct copper-iodine polyhedrons allow the emission colors to be linearly tunable from blue to yellow, encompassing pure white light, by tailoring the composition, excitation wavelength, or temperature. This study opens avenues for facile and precise modulation of the optical properties of metal halides by exploiting the intrinsic coordinative diversity of metal elements.

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