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Enhancing efficiency of quantum dot/photoresist nanocomposite using wrinkled silica-quantum dot hybrid particles

机译:利用皱纹二氧化硅 - 量子点杂交颗粒提高量子点/光致抗蚀剂纳米复合材料的效率

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摘要

We have synthesized hybrid particles by embedding CdSe/ZnS quantum dots (QDs) into wrinkled silica nanoparticles. We found that increasing the QD loading decreased the quantum yield (QY) of the wrinkled silica-QD hybrid particles. Compared to the previously-reported silica-QD hybrid particles, the wrinkled silica-QD hybrid particles exhibited higher QY, because the QD surfaces were not chemically modified during the hybridization process. The hybrid particles and free QDs were then used to prepare QD/photoresist nanocomposites. Since photoresist resin contains non-solvent for QDs, nanocomposites containing free QDs showed noteworthy aggregation even at 1.5 wt%, which resulted in deteriorated efficiency and stability. However, we were able to fabricate QD/photoresist nanocomposites successfully using hybrid particles up to 30 wt%, as the wrinkled silica nanoparticles helped in the dispersion of the QDs. By varying the concentration of hybrid particles in the nanocomposites, we found that the hybrid particles at 20 wt% exhibited the highest quantum efficiency. Testing of wrinkled silica/photoresist nanocomposites (without QDs), fabricated with different concentrations of the wrinkled silica nanoparticles, revealed that the highest efficiency at 20 wt% hybrid particles was the result of enhanced scattering by the wrinkled silica nanoparticles. Finally, simple devices in which hybrid particles were placed on blue mu-LEDs were fabricated, and their luminescence properties were analyzed.
机译:我们通过将CDSE / ZnS量子点(QDS)嵌入起皱的二氧化硅纳米粒子中来合成杂种颗粒。我们发现,增加QD负荷降低了皱纹二氧化硅QD杂交颗粒的量子产率(Qy)。与先前报道的二氧化硅QD杂交颗粒相比,皱纹的二氧化硅QD杂交颗粒表现出更高的QY,因为在杂交过程中QD表面未化学改性。然后使用混合颗粒和游离QD来制备QD /光致抗蚀剂纳米复合材料。由于光致抗蚀剂树脂含有非溶剂的QD,因此含有游离QD的纳米复合材料甚至在1.5wt%下表现出了值得注意的聚集,这导致效率劣化和稳定性。然而,我们能够使用高达30wt%的杂交颗粒成功地制造QD /光致抗蚀剂纳米复合材料,因为皱纹的二氧化硅纳米颗粒有助于QD的分散体。通过改变纳米复合材料中的杂化颗粒的浓度,我们发现20wt%的混合颗粒表现出最高量子效率。用不同浓度的皱硅纳米粒子制造的皱纹二氧化硅/光致抗蚀剂纳米复合材料(没有QDS)的测试表明,20wt%杂交颗粒的最高效率是由皱纹二氧化硅纳米粒子增强散射的结果。最后,制造了将杂种颗粒放置在蓝色MU-LED上的简单装置,分析了它们的发光性质。

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