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首页> 外文期刊>Macromolecular Research >Effect of tetrapod ZnO whiskers on the physical and moisture barrier properties of transparent polyimide/TZnO-W composite films
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Effect of tetrapod ZnO whiskers on the physical and moisture barrier properties of transparent polyimide/TZnO-W composite films

机译:四脚形ZnO晶须对透明聚酰亚胺/ TZnO-W复合膜的物理和防潮性能的影响

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摘要

Tetrapod zinc oxide whiskers (TZnO-Ws) were successfully prepared by a thermal oxidation method and confirmed using scanning electron microscopy (SEM) and wide angle X-ray diffraction (WAXD). A series of polyimide (PI)/TZnO-W composite films containing the as-prepared various TZnO-W contents were prepared and their physical properties were investigated to understand their potential use in flexible displays. The morphology, physical, and moisture barrier properties of the PI/TZnO-W composite films were interpreted as a function of the TZnO-W content. The PI/TZnO-W composite films exhibited an optical transparency greater than 80% at 550 nm (a parts per thousand currency sign0.5 wt% TZnO-W content), a low coefficient of thermal expansion (CTE), and enhanced glass transition temperature. However, the thermal decomposition temperature decreased as the TZnO-W content increased. Although the mechanical strength increased up to 0.3 wt% TZnO-W content, it decreased due to poor interfacial interaction with high TZnO-W loading. The water vapor transmission rate (WVTR) and water uptake of the composite films, which were strongly dependent upon their morphological and chemical structure, varied from 508.3 to 325.2 g/m(2)/day and 3.7 to 1.3 wt%, respectively, greatly decreased as the TZnO-W content increased. The water resistance capacity of PI was greatly enhanced and moisture diffusion in the pure PI was retarded by incorporating the TZnO-W.
机译:通过热氧化方法成功制备了四足形氧化锌晶须(TZnO-Ws),并使用扫描电子显微镜(SEM)和广角X射线衍射(WAXD)进行了确认。制备了一系列包含各种TZnO-W含量的聚酰亚胺(PI)/ TZnO-W复合膜,并对其物理性能进行了研究,以了解其在柔性显示器中的潜在用途。 PI / TZnO-W复合膜的形貌,物理和防潮性能被解释为TZnO-W含量的函数。 PI / TZnO-W复合膜在550 nm处表现出大于80%的光学透明性(千分之几的货币含量0.5 wt%TZnO-W含量),低的热膨胀系数(CTE)和增强的玻璃化转变温度。但是,随着TZnO-W含量的增加,热分解温度降低。尽管机械强度提高到TZnO-W含量高达0.3 wt%,但由于与高TZnO-W负载的不良界面相互作用而降低了。在很大程度上取决于其形态和化学结构的复合膜的水蒸气透过率(WVTR)和吸水率分别在508.3至325.2 g / m(2)/天和3.7至1.3 wt%之间变化随着TZnO-W含量的增加而降低。通过掺入TZnO-W,大大提高了PI的耐水性,并阻止了纯PI中的水分扩散。

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