材料科学
互连
导电体
纳米尺度
光电子学
纳米线
纳米技术
微电子机械系统
数码产品
热传导
柔性电子器件
二极管
各向异性
引线键合
可伸缩电子设备
可穿戴技术
传输(电信)
压阻效应
灵活的显示器
电接点
电子包装
墨水池
粘附
基质(水族馆)
转印
复合材料
电力传输
作者
Shumpei Katayama,Lulu Sun,Tomoki Shigehara,Daishi Inoue,Daisuke Hashizume,Shinjiro Umezu,Kenjiro Fukuda,Sunghoon Lee,Takao Someya
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-09-18
卷期号:12 (38): eaeh6203-eaeh6203
标识
DOI:10.1126/sciadv.aeh6203
摘要
As stretchable electronics advance in functionality and application scope, interconnection technologies have become critical. Devices in wearable and soft-robotic systems require thinness, stretchability, gas permeability, and damage-free bonding conditions. Accordingly, interconnection technologies must exhibit similar properties without compromising device performance. Conventional interconnection approaches rarely satisfy these requirements simultaneously owing to constraints such as typical thickness of several micrometers, low gas permeability, and the requirement for harsh bonding conditions (heat, pressure, or ultraviolet). This study presents an ultrathin, highly stretchable, gas-permeable nanoscale anisotropic conductive film (ACF) enabling damage-free bonding. The proposed ACF consists of patterned disks of silver nanowires infiltrated with styrene-ethylene-butylene-styrene block copolymer. The resulting nanoscale film (∼300-nanometer thickness) exhibits mechanical and electrical stretchability exceeding 500% strain with a water vapor transmission rate of 1200 grams per square meter per day. A bonding process based on liquid volatilization enables conformal adhesion to uneven surfaces without heat or external pressure, allowing device-to-skin and device-to-device interconnections. Light-emitting diodes integrated with stretchable wiring (500-micrometer pitch) using the proposed ACF maintained electrical conduction and interwire insulation even under 500% strain.
科研通智能强力驱动
Strongly Powered by AbleSci AI