State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, P. R. China.
Instrumental Analysis & Research Center, Shanghai University, Shanghai, 200444, P. R. China.
Small. 2023 Jun;19(22):e2208234. doi: 10.1002/smll.202208234. Epub 2023 Mar 3.
Stretchable electrochromic (EC) devices that can adapt the irregular and dynamic human surfaces show promising applications in wearable display, adaptive camouflage, and visual sensation. However, challenges exist in lacking transparent conductive electrodes with both tensile and electrochemical stability to assemble the complex device structure and endure harsh electrochemical redox reactions. Herein, a wrinkled, semi-embedded Ag@Au nanowire (NW) networks are constructed on elastomer substrates to fabricate stretchable, electrochemically-stable conductive electrodes. The stretchable EC devices are then fabricated by sandwiching a viologen-based gel electrolyte between two conductive electrodes with the semi-embedded Ag@Au NW network. Because the inert Au layer inhibits the oxidation of Ag NWs, the EC device exhibits much more stable color changes between yellow and green than those with pure Ag NW networks. In addition, since the wrinkled semi-embedded structure is deformable and reversibly stretched without serious fractures, the EC devices still maintain excellent color-changing stability under 40% stretching/releasing cycles.
可适应不规则和动态人体表面的弹性电致变色(EC)器件在可穿戴显示、自适应伪装和视觉感知方面具有广阔的应用前景。然而,在组装复杂器件结构和承受苛刻电化学氧化还原反应方面,缺乏具有拉伸和电化学稳定性的透明导电电极仍是挑战。在此,在弹性体基底上构建了褶皱的半嵌入式 Ag@Au 纳米线(NW)网络,以制备具有弹性和电化学稳定性的导电电极。然后,通过将基于紫精的凝胶电解质夹在两个具有半嵌入式 Ag@Au NW 网络的导电电极之间,制备出了可拉伸的 EC 器件。由于惰性 Au 层抑制了 Ag NW 的氧化,因此 EC 器件在黄色和绿色之间的颜色变化比纯 Ag NW 网络更为稳定。此外,由于褶皱的半嵌入式结构具有可变形性和可反复拉伸而不会出现严重断裂的特点,因此在 40%的拉伸/释放循环下,EC 器件仍能保持出色的变色稳定性。