材料科学
碳纳米管
焦耳加热
电极
纳米技术
灵活的显示器
光电子学
复合材料
图层(电子)
薄膜晶体管
物理化学
化学
作者
Jinsung Kim,Zhixin Xie,Zihang Peng,HyeonJi Hong,Shaghayegh Shajari,Yuxuan Guo,Hanxiang Wu,Yuan Meng,Roshan Plamthottam,Yuan Zhu,Yu Qiu,Huiying Wang,Alexander H.‐D. Cheng,Qibing Pei
标识
DOI:10.1002/adfm.202400023
摘要
Stretchable electrodes are an essential component in soft actuator systems. In particular, Joule heating electrodes (JHEs) are required for thermal actuation systems. A highly stretchable, patternable, and low-voltage operating JHE based on hybrid layers of silver nanowires (AgNWs) and carbon nanotubes (CNTs) is reported. The conductive layers were applied on a locally pre-strained bistable electroactive polymer (BSEP) membrane to form a wrinkled conductive surface with a low resistance of 300 Ω/sq, and subsequently patterned to a serpentine trace by laser engraving. The resistance of the resulting electrode remains nearly unchanged up to ~80-90% area strain. By applying a voltage of 7 - 9 V to the electrode, the temperature of the BSEP membrane increased to more than 60 °C, well above the polymer's phase transition temperature of 46 °C, thereby lowering its modulus by a factor of 103. An electronic Braille device based on the JHEs on a BSEP membrane was assembled with a diaphragm chamber. The electrode was patterned into 3 × 2 individually addressable pixels according to the standard U.S. Braille cell format. Through Joule heating of the pixels and local expansion of the BSEP membrane using a small pneumatic pressure, the pixels deformed out of the plane by over 0.5 mm to display specific Braille letters. The Braille content can be refreshed for 20,000 cycles at the same operating voltage.
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