Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo, Tokyo 113-8656, Japan.
Science. 2010 Nov 5;330(6005):808-11. doi: 10.1126/science.1195302.
Rational molecular design and processing, enabling large-area molecular ordering, are important for creating high-performance organic materials and devices. We show that, upon one-step hot-pressing with uniaxially stretched Teflon sheets, a polymer brush carrying azobenzene-containing mesogenic side chains self-assembles into a freestanding film, where the polymer backbone aligns homeotropically to the film plane and the side chains align horizontally. Such an ordered structure forms through translation of a one-dimensional molecular order of the Teflon sheet and propagates from the interface macroscopically on both sides of the film. The resultant wide-area bimorph configuration allows the polymer film to bend rapidly and reversibly when the azobenzene units are photoisomerized. The combination of polymer brushes with hot-pressing and Teflon sheets provides many possibilities in designing functional soft materials.
理性的分子设计和处理,能够实现大面积的分子有序排列,对于创造高性能的有机材料和器件非常重要。我们表明,通过用单轴拉伸的特氟龙片一步热压,带有含偶氮苯介晶侧链的聚合物刷自组装成一个独立的薄膜,其中聚合物主链沿垂直于膜平面的方向各向异性排列,而侧链则水平排列。这种有序结构是通过特氟龙片的一维分子有序的平移形成的,并从膜的两侧界面宏观上传播。所得的大面积双折射结构使得聚合物膜在偶氮苯单元光异构化时能够快速且可逆地弯曲。聚合物刷与热压和特氟龙片的结合为设计功能软材料提供了许多可能性。