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The structure of a polymer blend in a volume grating

机译:体积光栅中聚合物共混物的结构

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Holographic polymerization (H-P) has been used to fabricate polymer-dispersed liquid crystals, block copolymers and pattern inert nanoparticles. In this article, one-dimensional grating structures of Norland resin and a polymer blend were achieved using the H-P technique. A reflection grating structure known as a Bragg reflector (BR) was fabricated. The hierarchical structure and morphology of the BR were studied using synchrotron X-ray, polarized light microscopy and transmission electron microscopy. The structure of the BR containing a polymer blend displayed lamellae structures formed with periodicity of 200 nm. Polycaprolactone and Poly(L-lactide) crystals were found to be confined in ~60 nm thick layers in the BR. The polymer chains tended to orient themselves parallel to the grating when the two polymers where blended together. The phase separation and structure of the polymer blend inside the H-P grating could be of great interest for multifunctional optical sensors or devices.
机译:全息聚合(H-P)已用于制造分散在聚合物中的液晶,嵌段共聚物和图案惰性纳米粒子。在本文中,使用H-P技术获得了Norland树脂和聚合物共混物的一维光栅结构。制造了称为布拉格反射器(BR)的反射光栅结构。用同步加速器X射线,偏振光显微镜和透射电子显微镜研究了BR的分层结构和形态。含有聚合物共混物的BR的结构显示出以200nm的周期性形成的薄片结构。发现聚己内酯和聚(L-丙交酯)晶体被限制在BR的约60nm厚的层中。当两种聚合物混合在一起时,聚合物链趋于使其自身平行于光栅取向。 H-P光栅内部的聚合物共混物的相分离和结构可能对多功能光学传感器或设备非常感兴趣。

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