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Synthesis of Blue-Emissive InP/GaP/ZnS Quantum Dots via Controlling the Reaction Kinetics of Shell Growth and Length of Capping Ligands

机译:通过控制壳生长和封端配体长度的反应动力学来合成蓝色发光INP /间隙/ ZnS量子点

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摘要

The development of blue-emissive InP quantum dots (QDs) still lags behind that of the red and green QDs because of the difficulty in controlling the reactivity of the small InP core. In this study, the reaction kinetics of the ZnS shell was controlled by varying the length of the hydrocarbon chain in alkanethiols for the synthesis of the small InP core. The reactive alkanethiol with a short hydrocarbon chain forms the ZnS shell rapidly and prevents the growth of the InP core, thus reducing the emission wavelength. In addition, the length of the hydrocarbon chain in the fatty acid was varied to reduce the nucleation kinetics of the core. The fatty acid with a long hydrocarbon chain exhibited a long emission wavelength as a result of the rapid nucleation and growth, due to the insufficient In–P–Zn complex by the steric effect. Blue-emissive InP/GaP/ZnS QDs were synthesized with hexanethiol and lauryl acid, exhibiting a photoluminescence (PL) peak of 485 nm with a full width at half-maximum of 52 nm and a photoluminescence quantum yield of 45%. The all-solution processed quantum dot light-emitting diodes were fabricated by employing the aforementioned blue-emissive QDs as an emitting layer, and the resulting device exhibited a peak luminance of 1045 cd/m2, a current efficiency of 3.6 cd/A, and an external quantum efficiency of 1.0%.
机译:由于难以控制小型INP核心的反应性,蓝色发光INP量子点(QDS)的开发仍然滞后于红色和绿色QD。在该研究中,通过改变链烷醇中的烃链的长度来控制ZnS壳的反应动力学用于合成小型INP核心。具有短烃链的反应性链烷醇迅速地形成ZnS壳并防止InP芯的生长,从而降低发射波长。另外,脂肪酸中的烃链的长度变化以减少核心的核心动力学。由于通过空间效应不足,具有长的烃链的脂肪酸,由于快速成核和生长,由于核心快速和生长而显示出长度的发光波长。用六硫醇和月桂酸合成蓝色发光INP / GAP / ZnS QD,其光致发光(PL)峰为485nm,全宽为52nm,光致发光量子产率为45%。通过采用上述的蓝色发射QD作为发光层来制造全溶液处理的量子点发光二极管,并且所得装置表现出1045cd / m2的峰值亮度,其电流效率为3.6cd / a,外部量子效率为1.0%。

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