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Controlling the Morphology of Organic Crystals with Filamentous Bacteriophages

机译:用丝状噬菌体控制有机晶体的形态

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The preparation of thiamethoxam (TMX) organic crystals with high morphological uniformity was achieved by controlled aggregation-driven crystallization of primitive TMX crystals and phage using the filamentous M13 bacteriophage. The development of a regular, micrometer-sized, tetragonal-bipyramidal crystal structure was dependent on the amount of phage present. The phage appears to affect the supersaturation driving force for crystallization. The phage adsorption isotherm to TMX was well-fitted by the Satake-Yang model, which suggests a cooperative binding between neighboring phages as well as a binding of phage with the TMX crystal surface. This study shows the potential of phage additives to control the morphology and morphological uniformity of organic crystals.
机译:通过使用丝状M13噬菌体对原始TMX晶体和噬菌体进行受控的聚集驱动结晶,可以制备具有高形态均匀性的噻虫嗪(TMX)有机晶体。规则的,微米级的四方双锥体晶体结构的发展取决于存在的噬菌体的数量。噬菌体似乎影响结晶的过饱和驱动力。 Satake-Yang模型很好地拟合了噬菌体对TMX的吸附等温线,这表明相邻噬菌体之间的协同结合以及噬菌体与TMX晶体表面的结合。这项研究表明噬菌体添加剂控制有机晶体的形态和形态均匀性的潜力。

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