The Influence of Gravity on Single Crystallization in Large Volume Drops

I. Sandu, I. Iordache, C. Fleaca, F. Dumitrache, A.-M. Niculescu
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引用次数: 1

Abstract

The chemical, physical, and biological properties of more than two millions of proteins which follow to be synthesized by Pharmaceutical Industry, can be anticipated (by using their XRD diffrac-tograms) if they will be grown from aqueous drops as high quality, large volume single-crystals. This is not a simple task and usually the growing process is seen as art rather than a science. The growing is expensive, time consuming, and finally an amorphous aggregate may result instead one single-crystal. In this article, we show for the first time how one single crystal can be grown in large volume hanging drops through their fast evaporation. The single nucleation is determined by choosing the proper sense of gravitational force relative to the drop triple line contact. In a special configuration, single-crystals of glycine and threonine were rapidly grown.
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重力对大体积液滴单晶化的影响
如果将200多万种蛋白质从液滴中培养成高质量、大体积的单晶,那么它们的化学、物理和生物特性(通过使用它们的XRD衍射图)将被制药工业合成。这不是一项简单的任务,通常生长过程被视为艺术而不是科学。这种生长是昂贵的,耗时的,最后可能是一个无定形的聚集体,而不是一个单晶。在本文中,我们首次展示了单晶如何通过快速蒸发在大体积悬挂液滴中生长。单形核是通过选择相对于滴三线接触的适当的重力感来确定的。在一种特殊的结构中,甘氨酸和苏氨酸的单晶迅速生长。
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