Yin Luqiao, Zhou Jipeng, Li Weitao, Zhang Jianhua, Wang Liang
Key Laboratory of Advanced Display and System Applications, Shanghai University, Ministry of Education No. 149 Yanchang Road, Jingan District Shanghai 200072 P. R. China
School of Mechatronics and Automation, Shanghai University No. 149 Yanchang Road, Jingan District Shanghai 200072 P. R. China.
RSC Adv. 2019 Mar 21;9(16):9301-9307. doi: 10.1039/c8ra10353d. eCollection 2019 Mar 15.
In recent decades, quantum dots have been considered to be highly promising photoluminescent materials for white light devices. During the application of quantum dots in the fabrication of white LEDs, the spectrum and color temperature of the devices are modulated; these devices often involve quantum dots with different emission wavelengths. In this study, yellow-green emitting graphene quantum dots (GQDs) were fabricated using a simple, low-cost and eco-friendly method. The obtained GQDs were cast in UV-curable siloxane. Then, a polymer film with superior optical transparency and excellent monodisperse properties of GQDs was formed. the simple adjustment of thickness and the GQD concentration of the color convert matrix, tunable color temperatures (3196-10 870 K) of the GQD-based white light-emitting diodes (LEDs) were achieved. The CIE (Commission Internationale de L'Eclairage) coordinates of the GQD-based white light-emitting diodes matched well with the blackbody radiation curve. Using the fluorescent polymeric matrix in white LEDs, good quality emission and gratifying stability could be obtained. Moreover, this indicates that this technology has the potential for applications in high-end lighting.
近几十年来,量子点被认为是用于白光器件的极具前景的光致发光材料。在量子点应用于制造白色发光二极管(LED)的过程中,器件的光谱和色温会受到调制;这些器件通常涉及具有不同发射波长的量子点。在本研究中,采用简单、低成本且环保的方法制备了发射黄绿色光的石墨烯量子点(GQD)。将所得的GQD浇铸在可紫外固化的硅氧烷中。然后,形成了具有优异光学透明度和GQD优异单分散性能的聚合物薄膜。通过简单调整颜色转换基质的厚度和GQD浓度,实现了基于GQD的白色发光二极管(LED)的可调色温(3196 - 10870K)。基于GQD的白色发光二极管的CIE(国际照明委员会)坐标与黑体辐射曲线匹配良好。在白色LED中使用荧光聚合物基质,可以获得高质量的发光和令人满意的稳定性。此外,这表明该技术在高端照明领域具有应用潜力。