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Synchrotron radiation phase-contrast computed tomography study on self-assembly of polystyrene colloidal crystals via solvent evaporation

机译:溶剂蒸发蒸发聚苯乙烯胶体晶体自组装的同步辐射相衬计算机断层扫描研究

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摘要

The colloidal crystals of polystyrene (PS) spheres were assembled from the emulsion of PS by an in situ solvent evaporation method. The local internal 3D structure of the fabricated colloidal crystals was noninvasively characterized with synchrotron radiation phase-contrast computed tomography. The satisfactory contrast difference was obtained and the shapes of the spheres were clearly reconstructed. Based on the slice images, the two-stage mechanism of crystallization process for in situ evaporation was suggested. In the initial stage, stable nucleation and growth result in formation of an ordered face-centered cubic structure with the sphere volume fraction 70.2%, which is very close to the maximum sphere packing volume fraction 74%. In the second stage, the sphere concentration in suspension decreased too much to support an adequate sphere transfer through the solvent flux to the growth front. The transformation from square to hexagonal lattice did not therefore complete under the same evaporation rate. This incompleteness results in formation of local ordered structure with randomly arranged hexagonal and square packing with a slightly low volume fraction of 68.41%.
机译:通过原位溶剂蒸发法从PS乳液中组装了聚苯乙烯(PS)球的胶体晶体。用同步加速器辐射相差计算机断层扫描技术无创地表征了制备的胶体晶体的局部内部3D结构。获得了令人满意的对比度差异,并且清楚地重建了球体的形状。根据切片图像,提出了原位蒸发结晶过程的两阶段机理。在初始阶段,稳定的成核和生长导致形成有序的面心立方结构,其球形体积分数为70.2%,非常接近最大球形填充体积分数74%。在第二阶段,悬浮液中的球体浓度下降太多,无法支持通过溶剂通量到达生长前沿的充分球体转移。因此,在相同的蒸发速率下,从正方形到六角形晶格的转变没有完成。这种不完整性导致形成局部排列的结构,其具有随机排列的六边形和正方形堆积,体积分数略低,为68.41%。

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