材料科学
可伸缩电子设备
复合材料
导电体
复合数
弹性体
接触电阻
固化(化学)
丝网印刷
电接点
柔性电子器件
印刷电路板
电子皮肤
数码产品
纳米技术
电气工程
工程类
图层(电子)
作者
Duho Cho,Dong Kee Jang,Changju Chae,Sun Hong Kim,Taesu Kim,Su Yeon Lee,Jang‐Ung Park,Youngmin Choi,Sungmook Jung
标识
DOI:10.1002/aelm.202400668
摘要
Abstract This study introduces a novel Room‐Temperature Processable Stretchable Conductive Composite (RTPSC), uniquely combining room‐temperature processability, stretchability, and conductivity. Unlike traditional conductive materials requiring thermal or UV curing, which can damage heat‐sensitive components or cause substrate distortion, RTPSC uses a Styrene‐Butadiene‐Styrene (SBS) elastomer blended with silver conductive fillers and paraffin oil. This composition enables rapid solidification within five minutes at room temperature, mitigating thermal risks. Surface ligands on silver flakes are replaced with oleylamine, resulting in uniform silver distribution and enhanced resistance to acids, bases, and oxidation. The composite exhibits low contact resistance (0.1 Ω across 7.7 mm 2 ) and maintains robust mechanical and electrical properties under extensive deformation, thanks to its high adhesion force (704.5 gF/25 mm). Notably, contact resistance change remains within 0.15 Ω even after 1800 cycles at 50% strain. RTPSC's viscosity can be finely tuned by adding solvents and secondary fluids, enabling various printing techniques from spray to omni‐directional printing. This adaptability allows intricate patterning on delicate structures via spray printing and versatile connections between stretchable electrodes and rigid components through omni‐directional printing. These capabilities provide extensive design flexibility and ease of repair, making RTPSC highly suitable for innovative development and maintenance of stretchable electronic devices.
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