卤化物
零(语言学)
发光
金属
量子
材料科学
金属卤化物
混合的
化学
无机化学
光电子学
量子力学
有机化学
物理
哲学
生物
语言学
植物
作者
Chenkun Zhou,Haoran Lin,Yu Tian,Yuan Zhao,Ronald J. Clark,Banghao Chen,Lambertus J. van de Burgt,Jamie C. Wang,Yan Zhou,Kenneth Hanson,Quinton J. Meisner,Jennifer Neu,Tiglet Besara,Theo Siegrist,E. S. Lambers,Peter I. Djurovich,Biwu Ma
出处
期刊:Chemical Science
[Royal Society of Chemistry]
日期:2017-11-21
卷期号:9 (3): 586-593
被引量:618
摘要
Single crystalline zero-dimensional (0D) organic-inorganic hybrid materials with perfect host-guest structures have been developed as a new generation of highly efficient light emitters. Here we report a series of lead-free organic metal halide hybrids with a 0D structure, (C4N2H14X)4SnX6 (X = Br, I) and (C9NH20)2SbX5 (X = Cl), in which the individual metal halide octahedra (SnX64-) and quadrangular pyramids (SbX52-) are completely isolated from each other and surrounded by the organic ligands C4N2H14X+ and C9NH20+, respectively. The isolation of the photoactive metal halide species by the wide band gap organic ligands leads to no interaction or electronic band formation between the metal halide species, allowing the bulk materials to exhibit the intrinsic properties of the individual metal halide species. These 0D organic metal halide hybrids can also be considered as perfect host-guest systems, with the metal halide species periodically doped in the wide band gap matrix. Highly luminescent, strongly Stokes shifted broadband emissions with photoluminescence quantum efficiencies (PLQEs) of close to unity were realized, as a result of excited state structural reorganization of the individual metal halide species. Our discovery of highly luminescent single crystalline 0D organic-inorganic hybrid materials as perfect host-guest systems opens up a new paradigm in functional materials design.
科研通智能强力驱动
Strongly Powered by AbleSci AI