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Scalable production of CuInS2/ZnS quantum dots in a two-step droplet-based microfluidic platform

机译:两步基于液滴的微流体平台可扩展生产CuInS2 / ZnS量子点

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We report the scalable formation of CuInS2/ZnS nanocrystals using a two-stage microfluidic reactor integrated with a real-time optical detection system, which is able to monitor reaction parameters prior and subsequent to the addition of the shell material. By injecting a ZnS single source precursor in droplets containing CuInS2 cores and without the need of purification steps, we are able to obtain core-shell nanocrystal populations emitting between 580 and 760 nm with significant narrower size distributions (90-95 nm) than for the same material systems synthesized on the macroscale. In-line monitoring allowed for rapid assessment of optimum reaction parameters (Cu/In, S/(Cu + In), Zn/(Cu + In) molar ratios, temperatures and reaction time) and enabled the formation of CuInS2/ZnS nanocrystals with high photoluminescence quantum yields (similar to 55%) within a few seconds. We believe that this synthetic methodology will be of significant utility in controllable production of ternary and quaternary metal chalcogenides, complex core-shell and doped nanostructures.
机译:我们报告了使用集成了实时光学检测系统的两级微流控反应器,可扩展形成CuInS2 / ZnS纳米晶体,该反应器能够在添加壳材料之前和之后监测反应参数。通过将ZnS单源前体注入包含CuInS2核的液滴中,而无需纯化步骤,我们能够获得发射580至760 nm的核-壳纳米晶体,且其粒度分布(90-95 nm)明显窄于其。在宏观上合成的相同材料系统。在线监测可以快速评估最佳反应参数(Cu / In,S /(Cu + In),Zn /(Cu + In)摩尔比,温度和反应时间),并能够形成具有以下特征的CuInS2 / ZnS纳米晶体:在几秒钟内获得高的光致发光量子产率(约55%)。我们相信,这种合成方法将在可控生产三元和四元金属硫族化物,复杂的核壳和掺杂的纳米结构中具有重要的用途。

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