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Utilization of Solvothermally Grown InP/ZnS Quantum Dots as Wavelength Converters for Fabrication of White Light-Emitting Diodes

机译:溶剂热生长的InP / ZnS量子点作为波长转换器用于制造白光发光二极管

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This work reports on a simple solvothermal synthesis of InP/ZnS core/shell quantum dots (QDs) using a much safer and cheaper phosphorus precursor of tris(dimethylamino)phosphine than the most popularly chosen tris(trimethylsilyl)phosphine. The band gap of InP QDs is facilely controlled by varying the solvothermal core growth time (4 vs. 6 h) with a fixed temperature of 150℃, and the successive solvothermal ZnS shelling at 220℃ for 6 h results in green- and yellow-emtting InP/ZnS QD with emission quantum yield of 41-42%. The broad size distribution of as-synthesized InP/ZnS QDs, which appears to be inherent in the current solvothermal approach, is improved by a size-selective sorting procedure, and the emission properties of the resulting size-sorted QD fractions are investigated. To produce white emission for general lighting source, a blue light-emitting diode (LED) is combined with non-size-soroted green or yellow QDs as wavelength converters. Furthermore, the QD-LED that includes a blend of green and yellow QDs is fabricated to generate a white lighting source with an enhanced color rendering performance, and its electroluminescent properties are characterized in detail.
机译:这项工作报道了使用三(二甲基氨基)膦比最流行的三(三甲基甲硅烷基)膦更安全,更便宜的磷前体简单地溶剂热合成InP / ZnS核/壳量子点(QD)。 InP QD的带隙可以通过在固定温度150℃下改变溶剂热核心的生长时间(4 vs. 6 h)来容易地控制,随后在220℃连续溶剂热ZnS脱壳6 h导致绿色和黄色用InP / ZnS QD发射量子产率为41-42%。合成的InP / ZnS QD的宽尺寸分布似乎是当前溶剂热方法所固有的,它通过尺寸选择分选程序得到了改善,并且研究了所得尺寸分选QD馏分的发射特性。为了产生用于一般光源的白色发射,将蓝色发光二极管(LED)与尺寸不固定的绿色或黄色QD组合在一起作为波长转换器。此外,制造包括绿色和黄色QD的混合物的QD-LED以产生具有增强的显色性能的白色光源,并且其电致发光特性被详细表征。

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