College of Chemistry and Chemical Engineering, Shandong Sino-Japanese Center for Collaborative Research of Carbon Nanomaterials, Instrumental Analysis Center of Qingdao University, Qingdao University, Qingdao 266071, China.
Rizhao Custom, Rizhao 276826, China.
Molecules. 2023 Mar 26;28(7):2957. doi: 10.3390/molecules28072957.
In this work, multicolor fluorescent carbon dots with red (R-CDs), yellow (Y-CDs), and blue (B-CDs) emissions were prepared by choosing proper aromatic precursors with different amounts of benzene rings through a simple solvothermal method. The characterization showed that the prepared carbon dots were spherical with a size under 10 nm, rich surface functional groups, and good stability. The emission wavelengths were located at 440, 530, and 580 nm under the excitation of 370 nm. The relative fluorescence quantum yield () of R-CDs, Y-CDs, and B-CDs was 11%, 59%, and 33%, respectively. The related characterization demonstrated that the redshift in the photoluminescence was caused by the synergistic effect of the increasing graphitic nitrogen content, quantum size effect and surface oxidation state. By mixing the three prepared CDs into a PVA matrix, the transparent and flexible films produced relucent blue, yellow, and red emissions under 365 nm UV light, and solid-state quenching was effectively avoided. LEDs were fabricated by using B-CDs, Y-CDs, and R-CDs/PVA with a semiconductor chip. These CDs-based LEDs produced bright blue, yellow, and red light with CIE color coordinates of (0.16, 0.02), (0.38, 0.58), and (0.50, 0.49) were successfully manufactured utilizing the prepared blue, yellow and red multicolor carbon dots as the solid luminescent materials. The results showed that the synthesized CDs can be potentially applied in multi-color monitors as a promising candidate for light-emitting diodes (LEDs). This work blazes a novel trail for the controllable preparation of multicolor fluorescent carbon dots.
在这项工作中,通过选择具有不同苯环数量的合适芳香前体,通过简单的溶剂热法制备了具有红色(R-CDs)、黄色(Y-CDs)和蓝色(B-CDs)发射的多色荧光碳点。表征表明,所制备的碳点为球形,尺寸小于 10nm,具有丰富的表面官能团和良好的稳定性。在 370nm 激发下,发射波长分别位于 440、530 和 580nm。R-CDs、Y-CDs 和 B-CDs 的相对荧光量子产率()分别为 11%、59%和 33%。相关表征表明,光致发光的红移是由于石墨氮含量增加、量子尺寸效应和表面氧化态协同作用的结果。通过将三种制备的碳点混合到 PVA 基质中,在 365nm 紫外光下制备出透明柔韧的薄膜,发出明亮的蓝、黄、红色发射,有效地避免了固态猝灭。通过使用 B-CDs、Y-CDs 和 R-CDs/PVA 与半导体芯片制造了 LED。这些基于 CD 的 LED 产生了明亮的蓝、黄和红光,CIE 颜色坐标分别为(0.16,0.02)、(0.38,0.58)和(0.50,0.49),成功地利用制备的蓝、黄和红多色碳点作为固体发光材料制造了多色碳点 LED。结果表明,合成的 CD 可作为发光二极管(LED)的潜在候选材料,在多色显示器中具有广阔的应用前景。这项工作为可控制备多色荧光碳点开辟了新途径。