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Continuous supercritical synthesis of high quality UV-emitting ZnO nanocrystals for optochemical applications

机译:用于光化学应用的连续超临界合成高质量发射紫外线的ZnO纳米晶体

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ZnO nanocrystals (NCs) are of increasing interest in many industrial applications especially in the field of optochemical sensors. We recently demonstrated the synthesis of excitonic luminescent ZnO NCs using the perfectly controlled environment offered by supercritical microfluidics. However, the limited production rates of such a microscale synthesis approach make it essential to develop scaled-up continuous supercritical synthesis processes. Here, we investigate the influence of the scale-up effect from continuous microfluidic up to millifluidic systems over the synthesized ZnO NCs' optical properties. We also propose to discuss the influence of reactor's dimensions, as a consequence of different hydrodynamics regimes, on the characteristics of ZnO NCs. The obtained ZnO NCs have various shapes depending on the considered set-up. A strong excitonic-only emission in the UV region in room temperature photoluminescence (PL) spectra is obtained from all types of reactors, demonstrating the success of the scale-up process for higher production rates (up to 100 mg per hour).
机译:ZnO纳米晶体(NCs)在许多工业应用中,尤其是在光化学传感器领域中,受到越来越多的关注。我们最近展示了使用超临界微流体提供的完美控制环境来合成激子发光ZnO NC。但是,这种微型合成方法的生产速度有限,因此有必要开发按比例放大的连续超临界合成方法。在这里,我们研究了从连续的微流体到毫流体系统的放大效应对合成ZnO NCs光学性能的影响。我们还建议讨论由于流体动力学机制不同而导致的反应堆尺寸对ZnO NCs特性的影响。取决于所考虑的设置,所获得的ZnO NC具有各种形状。从所有类型的反应器中,都能在室温光致发光(PL)光谱中的UV区域中获得强烈的仅激子发射,这证明了大规模生产成功的放大工艺(每小时最高100 mg)。

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