自愈水凝胶
材料科学
纳米技术
数字光处理
涂层
千分尺
光热治疗
离子液体
墨水池
可伸缩电子设备
液态金属
海藻酸钠
数字微镜装置
离子键合
极限抗拉强度
光子学
复合材料
封装(网络)
光电子学
金属
作者
Junjie Du,Yue Wang,Weidong Zhao,Q Jackie Cao,Yingyi Cui,Fan Bu,Cao Guan
摘要
Liquid metal (LM) hydrogels emerge as promising materials for flexible electronics and soft robotics, but they are challenged by simplistic structure, limited precision, and insufficient functional designability. Herein, we demonstrate the first digital light processing of three-dimensional (3D) LM hydrogels with micrometer precision (10 µm) and arbitrarily elaborated architectures. A universal strategy is developed for photo-curable LM-based various resins by encapsulation of LM droplets with sodium alginate (SA). The SA coating not only prevents the ink from sedimentation and self-polymerization by forming hydrogen and ionic bonds, but also ensures uniformly dispersed ink with maintained photo-curing properties. As a result, the photo-cured 3D LM hydrogels illustrate enhanced tensile stretchability (2000%) and cycling stability (800 cycles at 500% strain), which outperforms most previously reported 3D hydrogels. The 3D LM hydrogel also shows enhanced sensitivity and tunable photothermal responsivity, demonstrating promising applications in strain sensors, object grasping robotics, remote-controlled devices, and anti-counterfeiting systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI