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Continuous, size and shape-control synthesis of hollow silica nanoparticles enabled by a microreactor-assisted rapid mixing process

机译:中空二氧化硅纳米粒子的连续,尺寸和形状控制合成通过微反应器辅助快速混合过程使能

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摘要

Hollow silica nanoparticles (HSNPs) were synthesized using a microreactor-assisted system with a hydrodynamic focusing micromixer. Due to the fast mixing of each precursor in the system, the poly(acrylic acid) (PAA) thermodynamic-locked (TML) conformations were protected from their random aggregations by the immediately initiated growth of silica shells. When altering the mixing time through varying flow rates and flow rate ratios, the different degrees of the aggregation of PAA TML conformations were observed. The globular and necklace-like TML conformations were successfully captured by modifying the PAA concentration at the optimized mixing condition. Uniform HSNPs with an average diameter similar to 30 nm were produced from this system. COMSOL numerical models was established to investigate the flow and concentration profiles, and their effects on the formation of PAA templates. Finally, the quality and utility of these uniform HSNPs were demonstrated by the fabrication of antireflective thin films on monocrystalline photovoltaic cells which showed a 3.8% increase in power conversion efficiency.
机译:使用具有流体动力学聚焦微混合物的微反应器辅助系统合成中空二氧化硅纳米颗粒(HSNP)。由于系统中每种前体的快速混合,通过立即引发二氧化硅壳的生长,保护聚(丙烯酸)(PAA)热力学锁定(TML)综合。当通过不同流速和流量比改变混合时间,观察到PAA TML构象的聚集的不同程度。通过在优化的混合条件下改变PAA浓度来成功捕获球状和项链的TML构象。该系统生产平均直径的均匀HSNP,平均直径与30nm相似。建立了COMSOL数值模型,以研究流动和浓度谱,以及它们对PAA模板形成的影响。最后,通过在单晶光伏电池上制造抗反射薄膜的抗反射薄膜的质量和效用,显示出功率转换效率增加3.8%。

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