首页> 外文会议>Annual technical conference of the Society of Plastics Engineers;ANTEC 2011 >SUBSTRATE EFFECTS ON THE CONFINED CRYSTALLIZATION OF POLYCAPROLACTONE IN COEXTRUDED NANOLAYERED FILMS
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SUBSTRATE EFFECTS ON THE CONFINED CRYSTALLIZATION OF POLYCAPROLACTONE IN COEXTRUDED NANOLAYERED FILMS

机译:共挤纳米薄膜中聚己内酯的有限结晶的基质效应

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Layer multiplying coextrusion was used to create multilayered films with hundreds or thousands of alternating layers of two polymers. This paper examines the structure-property relationships of poly(e-caprolactone) (PCL) nanolayers confined by a variety of polymer substrates. AFM, gas transport and WAXS characterizations were utilized to demonstrate that confined PCL nanolayers crystallized as large in-plane lamellae of high aspect ratio. This phenomenon, previously observed only for poly(ethylene oxide) (PEO), may be a more general phenomenon of crystalline polymers. In-plane PCL lamellae were as effective as PEO in reducing the oxygen permeability by more than 2 orders of magnitude. Additionally, the confining polymer substrate was found to affect to orientation of the PCL nanolayers due to chemical compatibility or epitaxial induced crystallization.
机译:层倍增共挤出用于产生具有数百或数千种两种聚合物的交替层的多层膜。本文研究了由多种聚合物基质限制的聚(ε-己内酯)(PCL)纳米层的结构-性质关系。原子力显微镜,气体传输和WAXS表征被用来证明受限的PCL纳米层结晶为高纵横比的大平面薄片。以前仅对聚环氧乙烷(PEO)观察到的这种现象可能是结晶聚合物的更普遍现象。平面PCL薄片与PEO一样有效地降低了2个数量级以上的透氧性。另外,发现由于化学相容性或外延诱导的结晶,限制聚合物基底影响PCL纳米层的取向。

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