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Diffusive and martensitic nucleation kinetics in solid-solid transitions of colloidal crystals

机译:胶体晶体固-固转变中的扩散和马氏体成核动力学

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摘要

Solid–solid transitions between crystals follow diffusive nucleation, or various diffusionless transitions, but these kinetics are difficult to predict and observe. Here we observed the rich kinetics of transitions from square lattices to triangular lattices in tunable colloidal thin films with single-particle dynamics by video microscopy. Applying a small pressure gradient in defect-free regions or near dislocations markedly transform the diffusive nucleation with an intermediate-stage liquid into a martensitic generation and oscillation of dislocation pairs followed by a diffusive nucleus growth. This transformation is neither purely diffusive nor purely martensitic as conventionally assumed but a combination thereof, and thus presents new challenges to both theory and the empirical criterion of martensitic transformations. We studied how pressure, density, grain boundary, triple junction and interface coherency affect the nucleus growth, shape and kinetic pathways. These novel microscopic kinetics cast new light on control solid–solid transitions and microstructural evolutions in polycrystals.
机译:晶体之间的固-固转变遵循扩散核化或各种无扩散转变,但是这些动力学很难预测和观察。在这里,我们通过视频显微镜观察了具有单粒子动力学的可调谐胶体薄膜中从方格到三角形格过渡的丰富动力学。在无缺陷区域或位错附近施加较小的压力梯度会显着地将具有中间阶段液体的扩散成核作用转变为马氏体生成和位错对的振荡,然后扩散核的生长。这种转变既不是传统上假定的纯粹扩散,也不是纯马氏体,而是它们的结合,因此对马氏体转变的理论和经验准则都提出了新的挑战。我们研究了压力,密度,晶界,三重连接和界面相干性如何影响核的生长,形状和动力学途径。这些新颖的微观动力学为多晶中的固相-固相转变和微观结构演变提供了新的思路。

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