材料科学
数码产品
智能材料
软机器人
纳米技术
相变
智能聚合物
聚合物
柔性电子器件
机械工程
人工肌肉
复合材料
计算机科学
机器人
执行机构
工程类
电气工程
人工智能
物理
量子力学
作者
Xing Zhao,Li‐Mei Peng,Yi Chen,Xiang‐Jun Zha,Wu‐Di Li,Lu Bai,Kai Ke,Rui‐Ying Bao,Ming‐Bo Yang,Wei Yang
出处
期刊:Materials horizons
[Royal Society of Chemistry]
日期:2021-01-01
卷期号:8 (4): 1230-1241
被引量:48
摘要
Traditional devices, including conventional rigid electronics and machines, as well as emerging wearable electronics and soft robotics, almost all have a single mechanical state for particular service purposes. Nonetheless, dynamic materials with interchangeable mechanical states, which enable more diverse and versatile applications, are urgently necessary for intelligent and adaptive application cases in the future electronic and robot fields. Here, we report a gel-like material composed of a crosslinking polymer network impregnated with a phase changing molten liquid, which undergoes an exceptional stiffness transition in response to a thermal stimulus. Vice versa, the material switches from a soft gel state to a rigid solid state with a dramatic stiffness change of 105 times (601 MPa versus 4.5 kPa) benefiting from the liquid-solid phase change of the crystalline polymer once cooled. Such reversibility of the phase and mechanical transition upon thermal stimuli enables the dynamic gel mechanical transformation, demonstrating potential applications in an adhesive thermal interface gasket (TIG) to facilitate thermal transport, a high-temperature warning sensor and an intelligent gripper. Overall, this dynamic gel with a tunable stiffness change paves a new way to design and fabricate adaptive smart materials toward intelligent control of versatile devices.
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