碳量子点
聚氨酯
荧光
量子点
碳纤维
材料科学
光化学
光电子学
化学
复合材料
物理
光学
复合数
作者
Bo Cheng,Hongrui Hu,Jianli Chen,Mingdi Yang,Ping Wang,Kehua Zhang,Chengbing Gong,Yunsheng Ding,Xianhai Hu
摘要
Abstract Fluorescent tunable materials have potential applications in lighting, display, anti‐counterfeiting, biological probes, and so on. Herein, carbon quantum dots (CQDs) with blue fluorescence (BCDs), and yellow fluorescence (YCDs) were synthesized by solvothermal method using bio‐based citric acid and lignin as carbon sources, respectively. BCDs and YCDs were anchored on polyurethane chains to prepare waterborne polyurethane‐based blue fluorescent carbon quantum dots (BCDs 1.0 ‐WPU) and waterborne polyurethane‐based yellow fluorescent carbon quantum dots (YCDs 1.0 ‐WPU), respectively. Compared with the corresponding BCDs and YCDs, the fluorescence intensity of both BCDs 1.0 ‐WPU and YCDs 1.0 ‐WPU is markedly enhanced, and the emission peaks obviously show a hypochromatic shift. A waterborne polyurethane‐based fluorescent tunable carbon quantum dots (BCDs x YPDs 1‐x ‐WPU) is prepared by mixing the ratio of BCDs 1.0 ‐WPU and YCDs 1.0 ‐WPU with the RGB method. It is noteworthy that BCDs x YCDs 1‐x ‐WPU not only achieves a fluent change of fluorescence from blue to yellow but also emits strong white fluorescence (CIE coordinates: X = 0.28, Y = 0.32). The absolute value of the Zeta potential of BCDs x YCDs 1‐x ‐WPU is greater than 40, indicating good storage stability. Furthermore, the thermal decomposition temperature is above 225 °C, implying good thermal stability. Furthermore, BCDs x YCDs 1‐x ‐WPU uses water as a continuous phase and has potential applications in environmentally friendly luminescence, anti‐counterfeiting and biological probes.
科研通智能强力驱动
Strongly Powered by AbleSci AI