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Enhancing Color Conversion Efficiency of Quantum Dot LED by Electric Field Assistance

机译:通过电场辅助提高量子点LED的颜色转换效率

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Based on electrohydrodynamic mechanics principle, this paper proposes a quantum dot (QD) LED dispensing package with adjustable profile to overcome the uneven coating distribution and uncontrollable structure of traditional dispensing coating which reduces the utilization of QDs The process of dispensing package is performed between two parallel plate electrodes with the distance of 5mm, and the polymer is changed by adjusting the electric field strength between plates. The dielectric power thus regulates the profile of the dispensing coating. The experimental results show that the peak value of the yellow band spectral intensity of the QD LED formed at 2.5kv voltage is 11.19% higher than the sample formed without voltage. And the luminous efficiency is 9.76% higher at the rated power, and the correlated color temperature(CCT) is reduced by 2491K under the same dispensing amount of coating material. Consequently, the color conversion efficiency and angular color uniformity (ACU) are improved simultaneously. The novel packaging method can obviously improve the optical performance of the quantum dot LED with a simple operation and low manufacture cost, which is promising in the industrialization prospect.
机译:基于电动流体力学原理,提出了一种可调整轮廓的量子点(QD)LED点胶包装,以克服传统点胶涂料分布不均匀和结构不可控的问题,降低了点胶的利用率。点胶过程在两个平行的点胶之间进行。板电极之间的距离为5mm,并通过调节板之间的电场强度来改变聚合物。介电功率因此调节分配涂层的轮廓。实验结果表明,在2.5kv电压下形成的QD LED的黄带光谱强度峰值比没有电压下形成的样品高11.19%。在相同的涂料用量下,额定功率下的发光效率提高了9.76%,相关色温(CCT)降低了2491K。因此,颜色转换效率和角度颜色均匀性(ACU)同时得到提高。该新颖的封装方法能够以简单的操作和较低的制造成本明显提高量子点LED的光学性能,这在工业化前景中是有希望的。

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