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Kinetics of layer hopping in a diblock copolymer lamellar phase

机译:二嵌段共聚物层状相中层间跳跃的动力学

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In the ordered state, symmetric diblock copolymers self-assemble into an anisotropic lamellar morphology. The equilibrium thickness of the lamellae is the result of a delicate balance between enthalpic and entropic energies, which can be tuned by controlling the temperature. Here we devise a simple yet powerful method of detecting tiny changes in the lamellar thickness using optical microscopy. From such measurements we characterize the enthalpic interaction as well as the kinetics of molecules as they hop from one layer to the next in order to adjust the lamellar thickness in response to a temperature jump. The resolution of the measurements facilitate a direct comparison to predictions from self-consistent field theory.
机译:在有序状态下,对称的二嵌段共聚物会自组装成各向异性的层状形态。薄片的平衡厚度是焓和熵能之间微妙的平衡的结果,可以通过控制温度来调节。在这里,我们设计了一种简单而强大的方法,即使用光学显微镜检测层状厚度的微小变化。通过这样的测量,我们可以表征分子间的焓相互作用以及分子从一层跳到下一层的动力学,以响应温度变化来调节层状厚度。测量的分辨率有助于直接与自洽场理论的预测进行比较。

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