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MICROFLUIDIC ASSEMBLY OF QUANTUM DOT MICELLES

机译:量子点胶束的微流态组装

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摘要

The controlled self-assembly of polymer-stabilized CdS quantum dot nanoparticles into quantum dot compound micelles (QDCMs) using microfluidics is demonstrated. In a flow-focusing configuration, water is introduced to a blend solution of block copolymer-stabilized quantum dots with amphiphilic block copolymer stabilizing chains. QDCM assembly via initial phase separation and subsequent agglomeration continue until a downstream quench step. Control over mean particle size and size distribution characteristics is demonstrated via both inlet concentrations and flow rate. The QDCMs assembled through this method are stable in aqueous solutions, and show internal and external structure in keeping with previous assembly methods. The on-chip evolution of QDCM formation and growth is resolved through fluorescence scattering. Particle size distributions and associated statistics are determined through off-chip analysis.
机译:证明了使用微流控技术将聚合物稳定的CdS量子点纳米粒子可控的自组装成量子点化合物胶束(QDCM)。在流动聚焦构造中,将水引入到嵌段共聚物稳定的量子点与两亲性嵌段共聚物稳定链的共混溶液中。通过初始相分离和后续附聚的QDCM组装继续进行,直到下游淬火步骤为止。通过入口浓度和流速证明了对平均粒径和粒径分布特征的控制。通过此方法组装的QDCM在水溶液中稳定,并显示出内部和外部结构,与以前的组装方法保持一致。 QDCM形成和生长的片上演化通过荧光散射得以解决。粒度分布和相关的统计数据是通过片外分析确定的。

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