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Formation of valine microcrystals through rapid antisolvent precipitation

机译:通过快速反溶剂沉淀形成缬氨酸微晶

摘要

In this work we have experimentally studied concentration effects on antisolvent precipitation of valine (an amino acid) from aqueous isopropanol solutions. Our experiments showed that the valine precipitation is very sensitive to both the supersaturation and to the water content in the final solution. Results from spectrophotometric measurements and supersaturation analysis showed that the crystal formation kinetics are strongly dependent on both mixing and concentration profiles in the early stages of the process, even though no visible change in the systems occurs immediately upon mixing with the antisolvent or subsequent dilution. Results from small-angle static light scattering measurements showed that the first visible crystals are of micron size and they grow only little over time, while their number increases gradually. Taken together, these experiments point to intermediate phase separation of (possible amorphous) precursors, being either very small nanoparticles or droplets with their refractive index closely matching that of the continuous phase, which subsequently assemble into micron size valine crystals.
机译:在这项工作中,我们已经实验研究了浓度对异丙醇水溶液中缬氨酸(一种氨基酸)的反溶剂沉淀的影响。我们的实验表明,缬氨酸沉淀对过饱和度和最终溶液中的水分非常敏感。分光光度法测量和过饱和度分析的结果表明,尽管在与反溶剂混合或随后稀释后,系统中没有立即发生明显变化,但在该过程的早期阶段,晶体形成动力学强烈取决于混合和浓度分布。小角度静态光散射测量的结果表明,第一个可见晶体的尺寸为微米,并且随时间的推移仅增长很少,而其数量却逐渐增加。综上所述,这些实验指出了(可能是无定形的)前体的中间相分离,该前体是非常小的纳米颗粒或液滴,其折射率与连续相的折射率非常匹配,随后会组装成微米大小的缬氨酸晶体。

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