首页 /研究 /Body-temperature softening electronic ink for additive manufacturing of transformative bioelectronics via direct writing
OTHER

Body-temperature softening electronic ink for additive manufacturing of transformative bioelectronics via direct writing

Do A Kwon, Simok Lee, Choong Yeon Kim, In-Ho Kang, Steve Park, Jae‐Woong Jeong

发表年份
2024
引用次数
51
访问权限
开放获取

摘要

Mechanically transformative electronic systems (TESs) built using gallium have emerged as an innovative class of electronics due to their ability to switch between rigid and flexible states, thus expanding the versatility of electronics. However, the challenges posed by gallium's high surface tension and low viscosity have substantially hindered manufacturability, limiting high-resolution patterning of TESs. To address this challenge, we introduce a stiffness-tunable gallium-copper composite ink capable of direct ink write printing of intricate TES circuits, offering high-resolution (~50 micrometers) patterning, high conductivity, and bidirectional soft-rigid convertibility. These features enable transformative bioelectronics with design complexity akin to traditional printed circuit boards. These TESs maintain rigidity at room temperature for easy handling but soften and conform to curvilinear tissue surfaces at body temperature, adapting to dynamic tissue deformations. The proposed ink with direct ink write printing makes TES manufacturing simple and versatile, opening possibilities in wearables, implantables, consumer electronics, and robotics.

关键词

InkwellNanotechnologyElectronicsBioelectronicsNanomanufacturingMaterials scienceDesign for manufacturabilityFlexible electronicsMechanical engineeringComputer science

相关论文

查看 OTHER 分类全部论文