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Observation of solid-solid transitions in 3D crystals of colloidal superballs

机译:观察胶体超级球三维晶体中的固 - 固转变

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摘要

Self-organization in anisotropic colloidal suspensions leads to a fascinating range of crystal and liquid crystal phases induced by shape alone. Simulations predict the phase behaviour of a plethora of shapes while experimental realization often lags behind. Here, we present the experimental phase behaviour of superball particles with a shape in between that of a sphere and a cube. In particular, we observe the formation of a plastic crystal phase with translational order and orientational disorder, and the subsequent transformation into rhombohedral crystals. Moreover, we uncover that the phase behaviour is richer than predicted, as we find two distinct rhombohedral crystals with different stacking variants, namely hollow-site and bridge-site stacking. In addition, for slightly softer interactions we observe a solid-solid transition between the two. Our investigation brings us one step closer to ultimately controlling the experimental self-assembly of superballs into functional materials, such as photonic crystals.
机译:各向异性胶体悬浮液中的自组织导致仅由形状引起的迷人的晶体和液晶相范围。仿真预测了许多形状的相位行为,而实验实现常常滞后。在这里,我们介绍了形状介于球形和立方体之间的超级球粒子的实验相行为。尤其是,我们观察到了具有平移顺序和取向紊乱的塑性晶体相的形成,以及随后转变为菱面体晶体的过程。此外,我们发现相行为比预期的要丰富,因为我们发现了两个不同的菱形晶体,它们具有不同的堆叠方式,即空心位和桥位位。另外,对于较弱的相互作用,我们观察到两者之间存在固-固过渡。我们的研究使我们更加接近最终控制超级球实验性自组装成功能材料(例如光子晶体)的过程。

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