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Impact of molecular speciation on crystal nucleation in polymorphic systems: The conundrum of gamma glycine and molecular 'self poisoning'

机译:分子形态对多晶型系统中晶体成核的影响:γ甘氨酸和分子“自毒”的难题

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The polymorphism of the simple amino acid glycine has been known for almost a century. It is also known that in aqueous solutions, at the isoelectric point (pl 5.9), the metastable alpha polymorph crystallizes, while the stable gamma form of glycine only nucleates at high and low pH. Despite the importance of understanding the process by which crystals nucleate, the solution and solid-state chemistry underlying this simple observation have never been explored. In this contribution, we have combined solution chemistry, crystallization, and crystallographic data to investigate the mechanisms by which this effect occurs. It is concluded that solution speciation and the consequent interactions between charged species and developing crystal nuclei determine the structural outcome of the crystallization process.
机译:简单氨基酸甘氨酸的多态性已经存在了近一个世纪。还已知在水溶液中,在等电点(p1 5.9),亚稳态的α多晶型物结晶,而稳定的甘氨酸γ型甘氨酸仅在高和低pH下成核。尽管了解晶体成核过程的重要性,但从未探索过基于这种简单观察的溶液和固态化学。在这项贡献中,我们结合了溶液化学,结晶和晶体学数据来研究这种效应发生的机理。结论是,溶液形态以及带电物质与发展中的晶核之间的相互作用决定了结晶过程的结构结果。

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