School of Physics and Materials Science, Anhui University, Hefei 230601, People's Republic of China.
Nanotechnology. 2017 Oct 27;28(43):435702. doi: 10.1088/1361-6528/aa878c. Epub 2017 Aug 22.
The work reports the fabrication of Cu doped Zn-In-S (CZIS) alloy quantum dots (QDs) using dodecanethiol and oleic acid as stabilizing ligands. With the increase of doped Cu element, the photoluminescence (PL) peak is monotonically red shifted. After coating ZnS shell, the PL quantum yield of CZIS QDs can reach 78%. Using reverse micelle microemulsion method, CZIS/ZnS QDs@SiO multi-core nanospheres were synthesized to improve the colloidal stability and avoid the aggregation of QDs. The obtained multi-core nanospheres were dispersed in curing adhesive, and applied as a color conversion layer in down converted light-emitting diodes. After encapsulation in curing adhesive, the newly designed LEDs show artifically regulated color coordinates with varying the weight ratio of green QDs and red QDs, and the concentrations of these two types of QDs. Moreover, natural white and warm white LEDs with correlated color temperature of 5287, 6732, 2731, and 3309 K can be achieved, which indicates that CZIS/ZnS QDs@SiO nanostructures are promising color conversion layer material for solid-state lighting application.
该工作报道了使用正十二硫醇和油酸作为稳定配体来制备铜掺杂的 Zn-In-S(CZIS)合金量子点(QD)。随着掺杂的 Cu 元素的增加,光致发光(PL)峰呈单调红移。在包覆 ZnS 壳后,CZIS QDs 的光致发光量子产率可达到 78%。采用反胶束微乳液法,合成了 CZIS/ZnS QDs@SiO 多核纳米球,以提高胶体稳定性并避免 QD 的聚集。所得多核纳米球分散在固化胶中,用作下转换发光二极管中的色转换层。在固化胶封装后,通过改变绿光 QD 和红光 QD 的重量比和两种 QD 的浓度,新设计的 LED 显示出人为调节的色坐标,并且可以实现相关色温为 5287、6732、2731 和 3309 K 的自然光和暖白光 LED,这表明 CZIS/ZnS QDs@SiO 纳米结构是用于固态照明应用的有前途的色转换层材料。