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Concentration-dependent multi-color humic acid-based carbon dots for luminescent polymer composite films

机译:用于发光聚合物复合薄膜的浓度依赖性多色腐植酸基碳点

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摘要

Color-tunable luminescent polymer composite materials are desired for applications in light-emitting diodes. Herein, we directly use commercial humic acid as precursor to fabricate carbon dots by one-step hydrothermal method in formic acid and hydrogen peroxide solution. It is found that the size distribution of synthesized carbon dots ranges from 2 to 5 nm, and the carbon dots display concentration-dependent multi-color luminescence in formic acid, N,N-dimethylformamide and deionized water under 365-nm UV light, separately. The quantum yield of the as-made carbon dots with broad color tunability (445-587 nm) in formic acid is about 20 at 0.3125 mg/ml. Furthermore, by adjusting the concentration of carbon dots in polyvinyl alcohol, the composite films emit blue, cyan and light yellow fluorescence and the Commission Internationale de L'Eclairage color coordinates vary from (0.19, 0.23), through (0.25, 0.35) to (0.29, 0.40) at the content of CDs 3, 5 and 7 wt. under the excitation of 365 nm, respectively. Meanwhile, the transmittance of the composite film at 5 wt. is maintained at 81.8 to 87.2 of the pure polyvinyl alcohol film at 550 nm wavelength. This work provides an innovative, simple and efficient way to prepare concentration-dependent polychromatic carbon dots composite films, and the obtained multi-color light-emitting composites have a wide range of photoluminescence spectra, covering most of the visible light range, which opens up the possibility of applying these materials in the fields of optoelectronic materials. GRAPHICS
机译:颜色可调的发光聚合物复合材料是发光二极管应用的理想材料。在此,我们直接使用商业腐植酸作为前驱体,在甲酸和双氧水溶液中通过一步水热法制备碳点。研究发现,合成碳点的粒径分布范围为2-5 nm,在365 nm紫外光下,碳点在甲酸、N,N-二甲基甲酰胺和去离子水中分别表现出浓度依赖性的多色发光。在0.3125 mg/ml时,在甲酸中具有宽颜色可调性(445-587 nm)的碳点的量子产率约为20%。此外,通过调节聚乙烯醇中碳点的浓度,复合薄膜发出蓝色、青色和浅黄色荧光,在365 nm激发下,CD含量分别为3、5和7 wt.%时,国际环保委员会色坐标从(0.19,0.23)到(0.25,0.35)至(0.29,0.40)变化。同时,在550 nm波长下,复合薄膜在5重量%时的透射率保持在纯聚乙烯醇薄膜的81.8%至87.2%。本工作为制备浓度依赖性多色碳点复合薄膜提供了一种创新、简单、高效的方法,所制备的多色发光复合材料具有较宽的光致发光光谱范围,覆盖了大部分可见光范围,为这些材料在光电材料领域的应用开辟了可能性。[图形]

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