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White‐Light‐Emitting Melamine‐Formaldehyde Microspheres through Polymer‐Mediated Aggregation and Encapsulation of Graphene Quantum Dots

机译:通过聚合物介导的聚集和石墨烯量子点包封的白光发光三聚氰胺-甲醛微球

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摘要

Graphene quantum dot (GQD) encapsulated melamine‐formaldehyde (MF) polymer microspheres with uniform particle size and tunable high‐quality white‐light emissions are prepared via a polymer‐mediated GQD assembly and encapsulation strategy. In solution, GQDs are first aggregated with MF prepolymer through electrostatic interaction and further encapsulated inside the microspheres formed by polymerization of MF prepolymer under acid catalysis and heating. During this process, the aggregated GQDs are fixed in the MF polymer matrix with their emission extended from blue to full visible range, presenting bright white luminescence under ultraviolet excitation. The prepared white‐light‐emitting GQD‐MF microspheres exhibit uniform morphology with an average particle size of 2.0 ± 0.08 µm and their luminescence properties are effectively regulated by the doping concentration of GQDs in the MF polymer matrix. A series of white‐light‐emitting GQD‐MF microspheres with quantum yields from 0.83 to 0.43, Commission Internationale de L'Eclairage coordinates from (0.28, 0.28) to (0.33, 0.32), and color rendering index from 0.75 to 0.88 are obtained with excellent photostability and thermal stability. By dispersing the GQD‐MF microspheres in cross‐linked polydimethylsiloxane matrix, flexible film with dual functions of high‐quality white‐light‐emitting and light diffusion is obtained and successfully applied for white light‐emitting diode fabrication.
机译:石墨烯量子点(GQD)封装的三聚氰胺-甲醛(MF)聚合物微球具有均匀的粒径和可调节的高质量白光发射,是通过聚合物介导的GQD组装和封装策略制备的。在溶液中,GQD首先通过静电相互作用与MF预聚物聚集,然后进一步封装在通过MF预聚物在酸催化和加热下聚合形成的微球内部。在此过程中,聚集的GQD固定在MF聚合物基质中,其发射范围从蓝色扩展到整个可见范围,在紫外线激发下呈现亮白色发光。制备的发白光的GQD-MF微球呈现出均匀的形态,平均粒径为2.0±0.08 µm,并且其发光性能受到MF聚合物基质中GQD的掺杂浓度的有效调节。获得了一系列白光发射的GQD-MF微球,其量子产率为0.83至0.43,国际照明委员会坐标为(0.28,0.28)至(0.33,0.32),显色指数为0.75至0.88具有出色的光稳定性和热稳定性。通过将GQD-MF微球分散在交联的聚二甲基硅氧烷基质中,可以获得具有高质量白光发射和光扩散双重功能的柔性膜,并将其成功地应用于白光二极管的制造。

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