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Preparation of quantum dot-embedded polymeric nanoparticles using flash nanoprecipitation

机译:利用快速纳米沉淀法制备量子点包埋的聚合物纳米粒子

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摘要

We developed a unique and efficient method to encapsulate quantum dots within amphiphilic polymer micelles using the flash nanoprecipitation technique and various micromixers (multi-inlets vortex mixer, MIVM, and confined impinging-jet mixer, CIJM). Owing to the rapid homogeneous mixing provided by the micromixers, we produced highly stable QD-embedded particles with very narrow size distributions. By adjusting the solvent-to-nonsolvent ratio, homopolymer concentration, and micromixer arrangement, the resulting mean particle diameter was varied from 90 to 800 nm. Additionally, the self-quenching of quantum dots, which is commonly observed in confined systems, was nearly eliminated by adding hydrophobic homopolymer during mixing. This technique results in controllable, rapid synthesis of fluorescent polymeric particles that are stable for many months. Potential applications of this method include the efficient synthesis of fluorescent tracer particles, tags for optical barcoding applications, and biosensors that utilize fluorescence resonance energy transfer (FRET).
机译:我们开发了一种独特且有效的方法,使用快速纳米沉淀技术和各种微混合器(多入口涡旋混合器MIVM和密闭喷射混合器CIJM)将量子点封装在两亲性聚合物胶束中。由于微混合器提供的快速均匀混合,我们生产了尺寸分布非常窄的高度稳定的QD嵌入式颗粒。通过调节溶剂与非溶剂的比例,均聚物浓度和微混合器排列,所得平均粒径在90至800 nm之间变化。另外,通常在密闭系统中观察到的量子点的自淬灭,通过在混合过程中添加疏水均聚物而几乎消除了。该技术导致可控制的快速合成稳定数月的荧光聚合物颗粒。该方法的潜在应用包括荧光示踪剂颗粒的有效合成,用于光学条形码应用的标签以及利用荧光共振能量转移(FRET)的生物传感器。

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