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Successive and large-scale synthesis of InP/ZnS quantum dots in a hybrid reactor and their application to white LEDs

机译:混合反应器中InP / ZnS量子点的连续大规模合成及其在白光LED中的应用

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摘要

We report successive and large-scale synthesis of InP/ZnS core/shell nanocrystal quantum dots (QDs) using a customized hybrid flow reactor, which is based on serial combination of a batch-type mixer and a flow-type furnace. InP cores and InP/ZnS core/shell QDs were successively synthesized in the hybrid reactor in a simple one-step process. In this reactor, the flow rate of the solutions was typically 1mlmin ~1, 100 times larger than that of conventional microfluidic reactors. In order to synthesize high-quality InP/ZnS QDs, we controlled both the flow rate and the crystal growth temperature. Finally, we obtained high-quality InP/ZnS QDs in colors from bluish green to red, and we demonstrated that these core/shell QDs could be incorporated into white-light-emitting diode (LED) devices to improve color rendering performance.
机译:我们报告了使用定制的混合流反应器,其基于间歇式混合器和流式炉的串联组合,连续且大规模地合成了InP / ZnS核/壳纳米晶体量子点(QD)。 InP核和InP / ZnS核/壳QD在混合反应器中以简单的一步法连续合成。在该反应器中,溶液的流速通常为1mlmin〜1,比常规微流反应器的流速大100倍。为了合成高质量的InP / ZnS QD,我们控制了流速和晶体生长温度。最终,我们获得了从蓝绿色到红色的高质量InP / ZnS QD,并且我们证明了这些核/壳QD可以并入白光发光二极管(LED)器件中以改善显色性能。

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