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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Manipulation of Cl/Br transmutation in zero-dimensional Mn2+-based metal halides toward tunable photoluminescence and thermal quenching behaviors
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Manipulation of Cl/Br transmutation in zero-dimensional Mn2+-based metal halides toward tunable photoluminescence and thermal quenching behaviors

机译:在可调谐光致发光和热淬火行为中操纵零维MN2 +基于金属卤化物中的Cl / Br嬗变

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摘要

Low-dimensional-networked metal halides are attractive for the screening of emitters applied in solid-state lighting and displays, but the lead toxicity and poor stability are obstacles that must be overcome in industrial applications. Herein, we aim at the discovery of bright and stable photoluminescence in zero-dimensional (0D) Mn2+-based metal halides. By manipulation of Cl/Br transmutation, the nature of the halogen can be confirmed as a pivotal factor to tune the PL behaviors, and the optimum Mn2+ emission with a high PLQY of 99.8% and a short lifetime of 0.372 ms can be achieved in (C24H20P)(2)MnBr4. The thermal quenching behaviors have been discussed in depth, indicating that the synergistic effect of good chemical stability of organic groups, a long MnMIDLINE HORIZONTAL ELLIPSISMn distance of 10.447 angstrom and a relatively large activation energy (Delta E = 0.277 eV) provides a platform for achieving excellent thermal stability in (C24H20P)(2)MnBr4. Moreover, the as-fabricated white LED device with a high luminous efficacy of 118.9 lm W-1 and a wide color gamut of 105.3% National Television System Committee (NTSC) shows that (C24H20P)(2)MnBr4 can be employed as a desirable narrow-band green emitter for LED displays. This work provides a new understanding of fine tailoring halogens, and proposes a feasible approach to achieving high thermal stability emitters toward the targeted practical applications.
机译:低维网状金属卤化物对于固态照明和显示器中应用的发射器的筛选具有吸引力,但铅毒性和稳定性差是工业应用中必须克服的障碍。在此,我们的目标是在零维(0D)Mn2+基金属卤化物中发现明亮且稳定的光致发光。通过控制Cl/Br的嬗变,可以确认卤素的性质是调节PL行为的关键因素,并且在(C24H20P)(2)MnBr4中可以实现最佳的Mn2+发射,具有99.8%的高PLQY和0.372 ms的短寿命。对热猝灭行为进行了深入讨论,表明有机基团良好的化学稳定性、10.447埃的长Mn中线水平椭圆距离和相对较大的活化能(δE=0.277 eV)的协同效应为(C24H20P)(2)MnBr4实现优异的热稳定性提供了平台。此外,(C24H20P)(2)MnBr4可以用作LED显示器的理想窄带绿色发射器,其制作的白色LED器件具有118.9 lm W-1的高发光效率和105.3%的宽色域。这项工作为精细剪裁卤素提供了新的理解,并提出了一种可行的方法,以实现针对实际应用的高热稳定性发射器。

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