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A novel approach to understand the nucleation kinetics of α and γ polymorphs of glycine from aqueous solution in the presence of a selective additive through charge compensation mechanism

机译:通过电荷补偿机制了解选择性添加剂存在下水溶液中甘氨酸的α和γ多晶型的成核动力学的新方法

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Nucleation of either the α or γ polymorph of glycine takes place by the dominant existence of dimer or monomer molecular conformations in solution. The effect of the selective additive sodium nitrate on the nucleation behaviour of the α and γ polymorphs of glycine is investigated both by experimental and analytical approaches. Experimentally, in situ nucleation tests were performed to measure the induction period of nucleation, type of nucleation and their proportionate appearance in the presence of different concentrations of the additive in solution. The internal structure of the nucleated crystallites was confirmed by single crystal X-ray diffraction analysis. Nucleation of α and γ glycine takes place through a charge compensation mechanism. The incorporation of various concentrations of the additive changes the supersaturation of the system, which in turn changes the induction period of nucleation. Nucleation of the γ polymorph occurs at a critical concentration of the additive. Analytically, the nucleation parameters, such as interfacial energy, volume excess free energy, critical radius, critical energy barrier and nucleation rate of the α and γ polymorphs, were estimated based on classical nucleation theory from the experimentally measured induction periods. Variation in these theoretically deduced nucleation parameters with respect to the supersaturation in the system coincides well with the experimentally observed variation of these parameters during the kinetic processes observed within the experimental conditions. This correlation between the experimental and theoretical evidences provides a deeper insight in enabling us to have a clear idea as to what exactly happens inside the system. Moreover, the probability nucleation ratio of the α and γ polymorphs, estimated by powder X-ray diffraction and DSC followed by their structural confirmations, coincides very well with the experimentally observed values.
机译:甘氨酸的α或γ多晶型物的成核是通过溶液中二聚体或单体分子构象的主要存在而发生的。通过实验和分析方法研究了选择性添加剂硝酸钠对甘氨酸α和γ多晶型物成核行为的影响。实验上,在溶液中存在不同浓度的添加剂时,进行了原位成核试验,以测量成核的诱导期,成核类型及其成比例出现。通过单晶X射线衍射分析确认了有核微晶的内部结构。 α和γ甘氨酸的成核通过电荷补偿机制发生。掺入各种浓度的添加剂会改变系统的过饱和度,进而改变成核的诱导期。 γ多晶型物的成核发生在添加剂的临界浓度下。在分析上,基于经典成核理论,通过实验测得的诱导期,估算了成核参数,例如界面能,体积过量自由能,临界半径,临界能垒和成核速率。这些理论推导的成核参数相对于系统中的过饱和度的变化与在实验条件下观察到的动力学过程中这些参数的实验观察到的变化非常吻合。实验证据与理论证据之间的这种关联提供了更深入的见解,使我们能够对系统内部确切发生的事情有一个清晰的认识。此外,通过粉末X射线衍射和DSC估算得到的α和γ多晶型的概率成核率,然后通过结构确认,与实验观察到的值非常吻合。

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