白光
量子点
二极管
材料科学
光电子学
光致发光
电致发光
显色指数
白色(突变)
发光二极管
亮度
光学
色温
自发辐射
载流子
高颜色
亮度
量子阱
量子效率
载流子寿命
活动层
图层(电子)
LED灯
物理
作者
Jeongwon Kim,Hyun‐Min Kim,Seungyong Shin,Yang‐Hee Kim,Heesun Yang,Ho Seong Jang
标识
DOI:10.1021/acsanm.5c03289
摘要
CuGaS2 (CGS) quantum dots (QDs) have garnered significant attention as white light-emitting materials for lighting and display applications, especially owing to their white color emission characteristics, arising from their broad photoluminescence (PL) and multiple recombination centers. However, a synthetic strategy for balancing the charge carriers in multiluminescent centers remains unresolved. Herein, we report white light-emitting CGS/ZnS/ZnS/ZnS (CGS/3ZnS) QDs with a broad-band PL property, which exhibits dual internal band centers. We adopt ZnS shell engineering with sub-nanometer thickness growth to balance the carrier distributions of CGS defect states, enabling the precise tuning of wide PL spectral bands. Additionally, the relative intensities of two PL band centers are controlled by adjusting the shell formation temperature, thus enabling fine-tuning of warm and cool white light emission. A series of white light-emitting CGS/3ZnS QDs is applied as the emission layer of an electroluminescence device, which results in white light emission with a maximum luminance of 1,285 cd/m2, an external quantum efficiency of 1.72%, high color rendering indices from 87 to 92, and highly tunable correlated color temperatures ranging from 5,900 to 18,200 K. This achievement provides guidance for the development of emerging white light sources.
科研通智能强力驱动
Strongly Powered by AbleSci AI