论文标题
发光的CDSE/CDS胶体量子点掺杂塑料光纤
Light-Generating CdSe/CdS Colloidal Quantum Dot-Doped Plastic Optical Fibers
论文作者
论文摘要
现在,胶体量子点(CQD)是一种成熟的纳米材料,具有通过不同大小和组成来定制的光学特性。但是,它们在光学设备中的使用受到限制,因为它们在光纤等方便形式并未广泛使用。随着结合纳米晶体的聚合方法的进步,可以实现适合加工成高质量混合活性纤维的纳米复合材料。我们展示了一种塑料光纤制造方法,可确保在聚合物核心基质中CQD的均匀分散。在聚苯乙烯中,在聚苯乙烯中每cm $^{3} $之间的10 $^{11} $ -10 $^{13} $ cdse/cds cqds之间的加载浓度是电子成像的,仅确认零星的次波长聚集物。因此,瑞利散射损耗在半导体带隙以下的能量上占主导地位,但在525 nm左右促进CQD激发左右的与CDS急剧相关的吸收开始被逐渐取代。然后,红移的光致发光发射沿纤维最小化,几乎没有受聚合影响的光谱,而量子收益率保持在$ \ sim $ \ sim $ 65 $ \%$ \%的初始值。后者以及玻璃过渡温度和折射率,与CQD浓度无关,因此产生了比例增加的光输出。我们的CQD掺杂纤维在几天内可光稳定至5 $ \%$以内,这对功能材料应用显示了很大的希望。
Colloidal quantum dots (cQDs) are now a mature nanomaterial with optical properties customizable through varying size and composition. However, their use in optical devices is limited as they are not widely available in convenient forms such as optical fibers. With advances in polymerization methods incorporating nanocrystals, nanocomposite materials suitable for processing into high quality hybrid active fibers can be achieved. We demonstrate a plastic optical fiber fabrication method which ensures homogeneous dispersion of cQDs within a polymer core matrix. Loading concentrations between 10$^{11}$-10$^{13}$ CdSe/CdS cQDs per cm$^{3}$ in polystyrene were electronically imaged, confirming only sporadic sub-wavelength aggregates. Rayleigh scattering losses are therefore dominant at energies below the semiconductors' band gap, but are overtaken by a sharp CdS-related absorption onset around 525 nm facilitating cQD excitation. The redshifted photoluminescence emission is then minimally reabsorbed along the fiber with a spectrum barely affected by the polymerization and a quantum yield staying at $\sim$65$\%$ of its initial value. The latter, along with the glass transition temperature and refractive index, is independent of the cQD concentration hence yielding a proportionally increasing light output. Our cQD-doped fibers are photostable to within 5$\%$ over days showing great promise for functional material applications.