Zhu Jinyang, Bai Xue, Chen Xu, Xie Zhifeng, Zhu Yongsheng, Pan Gencai, Zhai Yue, Zhang Hanzhuang, Dong Biao, Song Hongwei
State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, 2699 Qianjin Street, Changchun, 130012, P. R. China.
Dalton Trans. 2018 Mar 12;47(11):3811-3818. doi: 10.1039/c7dt04579d.
Carbon dots (CDs) have attracted extensive attention over the past decade due to their excellent advantages. However, few attempts have been reported for realizing the long-wavelength emission, especially for obtaining efficient solid-state red emission with high photoluminescence quantum yield (QY). Herein, we developed highly red light emitting CDs by the step-by-step surface modifications of the nitrogen-doped CDs. By introducing hexadecyltrimethyl ammonium bromide to modulate a red CD aqueous solution, the photoluminescence QY increases from 23.2% to 43.6%. Furthermore, we dispersed CDs in a PVP matrix for a solid-state film, where the solid-state quenching was effectively suppressed, and high QY (41.3%) of red light emission was achieved. Taking advantage of the as-prepared red light emitting CDs combining with the reported high quantum yield blue and green light emitting CDs, we realized UV-pumped WLEDs with tunable correlated color temperature from 7879 to 2961 K. Moreover, a high color rendering index (CRI) of 93 for WLEDs was realized, which is superior than the best records for the semiconductor quantum dot based WLEDs. Finally, the red light emitting CDs were demonstrated to have promising application as a red color converter in traditional YAG-based WLEDs to improve their CCT and CRI.
在过去十年中,碳点(CDs)因其优异的特性而备受广泛关注。然而,实现长波长发射的尝试报道较少,特别是获得具有高光致发光量子产率(QY)的高效固态红色发射。在此,我们通过对氮掺杂碳点进行逐步表面修饰,开发出了高发光红色碳点。通过引入十六烷基三甲基溴化铵来调节红色碳点水溶液,光致发光量子产率从23.2%提高到了43.6%。此外,我们将碳点分散在聚乙烯吡咯烷酮(PVP)基质中制成固态薄膜,有效抑制了固态淬灭,并实现了高量子产率(41.3%)的红色发光。利用所制备的红色发光碳点与已报道的高量子产率蓝色和绿色发光碳点相结合,我们实现了紫外泵浦的白光发光二极管(WLEDs),其相关色温在7879至2961 K之间可调。此外,WLEDs实现了93的高显色指数(CRI),优于基于半导体量子点的WLEDs的最佳记录。最后,红色发光碳点被证明作为传统基于钇铝石榴石(YAG)的WLEDs中的红色颜色转换器具有广阔的应用前景,可提高其相关色温(CCT)和显色指数(CRI)。