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Solvent subset selection for polymorph screening

机译:多晶型物筛选的溶剂子集选择

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In polymorph screening it is imperative to maximize the physicochemical diversity of solvents used in crystallization experiments. This is done in order to increase the probability of finding as many crystal forms of the compound as possible. When setting up a complete solid form screening scheme it is common practice to work with solvent subsets of varying sizes, adequately spanning the chemical space. There exists a wide array of algorithms to perform this pre-experimental selection. Prior to the implementation of these methods, the impact on the physicochemical diversity observed in the selected subsets should be fully understood. In the current study subsets of 5, 10 and 20 solvents were selected from a database of 218 organic solvents times 24 property descriptors. For this purpose four mathematically different subset selection algorithms were tested and compared: Federov D-optimal selection, Kennard-Stone selection. Principal Properties selection and a Cluster-Based selection. Federov D-optimal, Kennard-Stone and the Cluster-Based selection primarily sampled in the outer regions of solvent space, whereas the Principal Properties approach represented more of a compromising solution selecting solvents closer to the centre. In conclusion, subset selection algorithms in crystallization experimental design should be used to guarantee physicochemical diversity, though it is recommended that the computed selection is supplemented with solvents selected based on chemical knowledge of the particular compound being screened.
机译:在多晶型物筛选中,必须最大化结晶实验中所用溶剂的物理化学多样性。这样做是为了增加发现化合物的尽可能多晶型的可能性。设置完整的固体形式筛选方案时,通常的做法是使用大小可变的溶剂子集,以充分覆盖化学空间。存在各种各样的算法来执行该实验前的选择。在实施这些方法之前,应充分了解所选子集中观察到的对理化多样性的影响。在本研究中,从218种有机溶剂乘以24个属性描述符的数据库中选择了5、10和20种溶剂的子集。为此,对四种数学上不同的子集选择算法进行了测试和比较:Federov D最优选择,Kennard-Stone选择。主要属性选择和基于群集的选择。 Federov D最优,Kennard-Stone和基于聚类的选择主要在溶剂空间的外部区域进行采样,而Principal Properties方法代表的是一种折衷解决方案,它选择了更靠近中心的溶剂。总之,尽管建议在计算的选择中添加根据所筛选特定化合物的化学知识选择的溶剂,但仍应使用结晶实验设计中的子集选择算法来保证理化多样性。

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