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Cellulose-Templated Stable Foldable Oriented Films with Polarized RGB Luminescence

机译:具有偏振RGB发光的纤维素模板稳定可折叠取向薄膜

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摘要

Solution processing in a vacuum-free system is highly advantageous because printing, coating, and roll-to-roll processes can be used for large-area and scalable manufacturing. However, producing a flat surface with high orientation is challenging. In addition, high folding stability is essential for building a basis for foldable devices. Herein, we present a valuable method to obtain oriented films of π-conjugated polymers, which we describe as a 'Simple way of Orienting Films prepared by Templating cellulose,' abbreviated as SOFT. In this method, a glass or flexible substrate was uniaxially coated by a single-sweep process using a wet cloth containing a cellulose solution. A conjugated polymer solution, an OLED material, was deposited onto the cellulose film by spin coating, followed by thermal annealing. A uniaxially oriented film was obtained with orientation factors up to 0.9, and its polarized fluorescence was verified for red/green/blue colors. The oriented films were stable at various positions and showed no degradation of orientation factors after folding 100-500 times at a folding angle of 320°. The homogeneous area and surface roughness of the films were approximately 2 X 3 cm~2 and 50 nm, respectively, with an orientation reproducibility of ~96. A high tensile strength of 30 MPa was measured on the oriented films. The orientation mechanism was attributed to the alignment of the backbone structure of the conjugated polymers along the surface anisotropy of a uniaxially coated cellulose film.
机译:在无真空系统中进行溶液处理非常有利,因为印刷、涂层和卷对卷工艺可用于大面积和可扩展的制造。然而,生产具有高方向的平坦表面具有挑战性。此外,高折叠稳定性对于为可折叠设备奠定基础至关重要。在此,我们提出了一种有价值的方法来获得π共轭聚合物的取向薄膜,我们将其描述为“通过模板化纤维素制备取向薄膜的简单方法”,缩写为SOFT。在该方法中,使用含有纤维素溶液的湿布通过单次扫描工艺单轴涂覆玻璃或柔性基板。通过旋涂将共轭聚合物溶液(OLED材料)沉积到纤维素薄膜上,然后进行热退火。获得了取向因子高达0.9的单轴取向薄膜,并验证了其红/绿/蓝颜色的偏振荧光。取向薄膜在不同位置均保持稳定,在320°折叠角下折叠100-500次后,取向因子没有退化。薄膜的均匀面积和表面粗糙度分别约为2 X 3 cm~2和50 nm,取向重现性为~96%。在取向薄膜上测量了 30 MPa 的高拉伸强度。取向机制归因于共轭聚合物的主链结构沿单轴涂层纤维素薄膜表面各向异性的排列。

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    Department of Chemistry, Graduate School of Science, Hiroshima University, Higashi-Hiroshima, Hiroshima 739-8526, Japan;

    Department of Chemistry, Graduate School of Science, Hiroshima University, Higashi-Hiroshima, Hiroshima 739-8S26, Japan;

    Department of Chemistry, Graduate School of Science and Natural Science Center for Basic Research and Development (N-BARD), Hiroshima University, Higashi-Hiroshima, Hiroshima 739-8526, Japan;

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  • 正文语种 英语
  • 中图分类 工程材料学;
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