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离子电子发光纤维、织物及其他结构

Ionotronic Luminescent Fibers, Fabrics, and Other Configurations.

作者信息

Yang Canhui, Cheng Sibo, Yao Xi, Nian Guodong, Liu Qihan, Suo Zhigang

机构信息

John A. Paulson School of Engineering and Applied Sciences, Kavli Institute for Bionano Science and Technology, Harvard University, Cambridge, MA, 02138, USA.

Department of Mechanics and Aerospace Engineering, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, P. R. China.

出版信息

Adv Mater. 2020 Nov;32(47):e2005545. doi: 10.1002/adma.202005545. Epub 2020 Oct 21.

Abstract

A family of recently developed devices, hydrogel ionotronics, uses hydrogels as ionic conductors, and uses hydrophobic elastomers as dielectrics. This development has posed a challenge: integrate hydrogels and hydrophobic elastomers-in various manufacturing processes-with strong, stretchable, and transparent adhesion. Here, a multistep dip-coating process is described to enable hydrogel ionotronics of diverse configurations. In doing so, a hydrophobic surface is primed to let a hydrophilic precursor wet it, and then polymers of different layers are interlinked with covalent bonds. As a representative example, an ionotronic luminescent fiber that can be lengthened to ≈2.5 times its original length and keeps functioning after 10 000 cycles of stretching is fabricated. A luminescent fabric that displays movable pixels and other configurations is also demonstrated. The proposed method of fabrication expands the design space for hydrogel ionotronics.

摘要

最近开发的一类设备——水凝胶离子电子器件,使用水凝胶作为离子导体,并使用疏水性弹性体作为电介质。这一进展带来了一项挑战:在各种制造工艺中,将水凝胶和疏水性弹性体以牢固、可拉伸且透明的方式粘合在一起。在此,描述了一种多步浸涂工艺,以实现各种配置的水凝胶离子电子器件。通过这种方法,先对疏水表面进行预处理,使亲水性前驱体能够润湿它,然后不同层的聚合物通过共价键相互连接。作为一个代表性例子,制造出了一种离子电子发光纤维,它可以拉长至其原始长度的约2.5倍,并在10000次拉伸循环后仍能保持功能。还展示了一种显示可移动像素及其他配置的发光织物。所提出的制造方法扩展了水凝胶离子电子器件的设计空间。

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