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首页> 外文期刊>ACS Omega >Green Photoluminescence of Perovskite CsPb(Br1–xIx)3 Nanocrystals for Wide Color Gamut Displays
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Green Photoluminescence of Perovskite CsPb(Br1–xIx)3 Nanocrystals for Wide Color Gamut Displays

机译:钙钛矿CsPb(Br1-xIx)3纳米晶体的绿色光致发光,用于宽色域显示。

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摘要

All-inorganic mixed-halide CsPb(Br1–xIx)3 perovskite nanocrystals (NCs) are excellent candidates for green-emitting phosphors in wide color gamut displays; however, a detailed investigation of their photoluminescence (PL) properties based on the halide composition has been missing. In this work, we report a fundamental investigation of the changes in the PL properties of CsPb(Br1–xIx)3 NCs. The PL color of the NCs, which were prepared by a hot-injection method, changed from green to red with increasing iodide composition (x). Almost ideal green emission close to the chromaticity coordinates of the green vertex of the BT.2020 standard was achieved by appropriately substituting iodide ions for bromide ions in monohalide CsPbBr3 NCs. However, the PL peak width of the mix-halide NCs at x ~ 0.5 was 0.127 eV, which was broader than the 0.105 eV peak width of the monohalide CsPbBr3 NCs. This phenomenon should be due to the compositional inhomogeneity among the individual CsPb(Br1–xIx)3 NCs. On the other hand, the PL quantum yield (PLQY) for the monohalide CsPbBr3 NCs decreased from 70 to 25% as x increased to 0.5. This result may be attributed to lattice distortion by the difference in the ionic radii of bromide and iodide. Improvements in the compositional inhomogeneity and lattice distortion would enhance the color purity of the green emission and the PLQY, respectively, of the CsPb(Br1–xIx)3 NCs.
机译:全无机混合卤化物CsPb(Br1-xIx)3钙钛矿纳米晶体(NCs)是宽色域显示器中发射绿色磷光体的极佳候选材料。但是,缺少基于卤化物组成的光致发光(PL)特性的详细研究。在这项工作中,我们报告了对CsPb(Br1-xIx)3 NC的PL特性变化的基础研究。通过热注射法制备的NC的PL颜色随碘化物组成(x)的增加从绿色变为红色。通过在单卤化物CsPbBr3 NC中用碘离子取代溴离子,可以实现接近BT.2020标准绿色顶点色度坐标的几乎理想的绿色发射。但是,混合卤化物NCs在x〜0.5处的PL峰宽为0.127 eV,比单卤化物CsPbBr3 NCs的0.105 eV宽。这种现象应归因于各个CsPb(Br1-xIx)3 NC之间的成分不均匀性。另一方面,随着x增大到0.5,单卤化物CsPbBr3 NC的PL量子产率(PLQY)从70%下降到25%。该结果可归因于溴化物和碘化物的离子半径的差异引起的晶格畸变。成分不均匀性和晶格畸变的改善将分别提高CsPb(Br1-xIx)3 NC的绿色发射和PLQY的颜色纯度。

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