Yu Huitao, Feng Yiyu, Chen Can, Zhang Heng, Peng Lianqiang, Qin Mengmeng, Feng Wei
Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin University, Tianjin, 300350, P. R. China.
Key Laboratory of Materials Processing and Mold, Ministry of Education, Zhengzhou University, Zhengzhou, 450002, P. R. China.
Adv Sci (Weinh). 2022 Nov;9(33):e2201331. doi: 10.1002/advs.202201331. Epub 2022 Oct 17.
Heat and stress transfer at an interface are crucial for the contact-based tactile sensing to measure the temperature, morphology, and modulus. However, fabricating a smart sensing material that combines high thermal conductivity, elasticity, and good adhesion is challenging. In this study, a composite is fabricated using a directional template of vertically aligned folded graphene (VAFG) and a copolymer matrix of poly-2-[[(butylamino)carbonyl]oxy]ethyl ester and polydimethylsiloxane, vinyl-end-terminated polydimethylsiloxane (poly(PBAx-ran-PDMS)). With optimized chemical cross-linking and supermolecular interactions, the poly(PBA-ran-PDMS)/VAFG exhibits high thermal conductivity (15.49 W m K ), an high elastic deformation, and an interfacial adhesion of up to 6500 N m . Poly(PBA-ran-PDMS)/VAFG is highly sensitive to temperature and pressure and demonstrates a self-learning capacity for manipulator applications. The smart manipulator can distinguish and selectively capture unknown materials in the dark. Thermally conductive, elastic, and adhesive poly(PBA-ran-PDMS)/VAFG can be developed into core materials in intelligent soft robots.
界面处的热传递和应力传递对于基于接触的触觉传感来测量温度、形态和模量至关重要。然而,制造一种兼具高导热性、弹性和良好粘附性的智能传感材料具有挑战性。在本研究中,使用垂直排列的折叠石墨烯(VAFG)的定向模板和聚-2-[[(丁基氨基)羰基]氧基]乙酯与聚二甲基硅氧烷、乙烯基封端的聚二甲基硅氧烷(聚(PBAx-ran-PDMS))的共聚物基质制备了一种复合材料。通过优化化学交联和超分子相互作用,聚(PBA-ran-PDMS)/VAFG表现出高导热性(15.49 W m K)、高弹性变形以及高达6500 N m的界面粘附力。聚(PBA-ran-PDMS)/VAFG对温度和压力高度敏感,并展示了在操纵器应用中的自学习能力。智能操纵器能够在黑暗中区分并选择性捕获未知材料。具有导热性、弹性和粘附性的聚(PBA-ran-PDMS)/VAFG可被开发成为智能软机器人的核心材料。