材料科学
电磁屏蔽
复合数
导电体
复合材料
导电聚合物
数码产品
可伸缩电子设备
柔性电子器件
纳米技术
聚合物
电气工程
工程类
作者
Abdollah Hajalilou,Elahe Parvini,Tiago A. Morgado,Pedro Alhais Lopes,M. E. Melo Jorge,Marta Freitas,Mahmoud Tavakoli
标识
DOI:10.1021/acsami.4c17151
摘要
Liquid metal (LM)-based composites hold promise for soft electronics due to their high conductivity and fluidic nature. However, the presence of {\alpha}_Ga2O3 and GaOOH layers around LM droplets impairs conductivity and performance. We tackle this issue by replacing the oxide layer with conductive silver (Ag) using an ultrasonic_assisted galvanic replacement reaction. The Ag_coated nanoparticles form aggregated, porous microparticles that are mixed with styrene_isoprene_styrene (SIS) polymers, resulting in a digitally printable composite with superior electrical conductivity and electromechanical properties compared to conventional fillers. Adding more LM enhances these properties further. The composite achieves EMI shielding effectiveness (SE) exceeding 75 dB in the X_band frequency range, even at 200 per cent strain, meeting stringent military and medical standards. It is applicable in wireless communications and Bluetooth signal blocking and as a thermal interface material (TIM). Additionally, we highlight its recyclability using a biodegradable solvent, underscoring its eco_friendly potential. This composite represents a significant advancement in stretchable electronics and EMI shielding, with implications for wearable and bioelectronic applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI