Advanced Photonics Center, School of Electronic Science and Engineering, Southeast University, Nanjing, 210096, China.
Nanoscale. 2018 Oct 4;10(38):18331-18340. doi: 10.1039/c8nr04224a.
High color-purity CdZnSeS alloy cores and CdZnSeS/ZnS core/shell quantum dots (QDs) with 3, 11 and 17 monolayer (ML) ZnS shells are synthesized, and the narrow emission (full-width at half-maximum: ∼21 nm) is ascribed to the high size uniformity of QDs and the narrow linewidth of single QD spectra. Ultraviolet (UV) irradiation experiments show that the photo-stabilities of the samples improve remarkably with increasing shell thickness, but the photo-stability clearly decreases when the shell thickness is further increased to 17 MLs. Spectroelectrochemical (SEC) measurements indicate that the exciton recombination of QDs is mainly affected by surface electronic traps, and the interaction between exciton recombination centers and surface traps is significantly weakened with the increase in shell thickness due to the decreased wave function overlap of the exciton and surface traps. In the case of the 17 ML shell, the reduced photo-stability is due to increased interfacial defects caused by stress release during UV illumination, which can be proved by high-resolution transmission electron microscopy images and X-ray diffraction patterns. Furthermore, based on QDs' theoretical mass calculations, a photo-stable white light-emitting diode is fabricated by encapsulating with a thick-shell QD, and an exceptional color gamut of 130% relative to the National Television Systems Committee color space can be achieved. Also, its colorimetry and photometry are discussed in detail.
高色纯度 CdZnSeS 合金核和具有 3、11 和 17 个单层(ML)ZnS 壳的 CdZnSeS/ZnS 核/壳量子点(QD)被合成,窄发射(半峰全宽:∼21nm)归因于 QD 的高尺寸均匀性和单 QD 光谱的窄线宽。紫外(UV)辐照实验表明,随着壳层厚度的增加,样品的光稳定性显著提高,但当壳层厚度进一步增加到 17 ML 时,光稳定性明显下降。光谱电化学(SEC)测量表明,QD 的激子复合主要受表面电子陷阱的影响,由于激子和表面陷阱的波函数重叠减小,壳层厚度的增加会显著减弱激子复合中心与表面陷阱之间的相互作用。在 17 ML 壳层的情况下,光稳定性的降低是由于在 UV 照射期间释放应力导致界面缺陷增加,可以通过高分辨率透射电子显微镜图像和 X 射线衍射图案来证明。此外,基于 QD 的理论质量计算,通过封装具有厚壳 QD 来制造稳定的白色发光二极管,可以实现相对于国家电视系统委员会颜色空间的 130%的卓越色域。还详细讨论了其色度和光度学。