Wang Jinzhi, Sun Shaojie, Li Xue, Fei Guoxia, Wang Zhanhua, Xia Hesheng
State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute, Sichuan University, Chengdu, China.
3D Print Addit Manuf. 2023 Aug 1;10(4):684-696. doi: 10.1089/3dp.2021.0105. Epub 2023 Aug 9.
Conductive silicone elastomer carbon nanotubes (CNTs) composites possess potential applications in a variety of fields, including electronic skin, wearable electronics, and human motion detection. Based on a novel self-made covalent adaptable network (CANs) of polydimethylsiloxane (PDMS) containg dynamic steric-hindrance pyrazole urea bond (PDMS-CANs), CNTs wrapped PDMS-CANs (CNTs@PDMS-CANs) powders were prepared by a liquid phase adsorption and deposition, and were successfully used for selective laser sintering (SLS) three-dimensional printing. SLS-printed PDMS-CANs/CNTs nanocomposites possess high electrical conductivity and low percolation threshold as SLS is one kind of quasi-static processing, which leads to the formation of conductive segregated CNTs network by using the PDMS powders with special CNTs wrapped structure. The introduction of dynamic pyrazole urea bond endows the materials self-healing capability under electrothermal and photothermal stimulus. In addition, due to the resistance difference of the damaged and intact areas, crack diagnosing can be realized by infrared thermograph under electricity. In an application demonstration in strain sensor, the composite exhibits a regular cyclic electrical resistance change at cyclic compression and bending, indicating a relative high reliability.
导电硅橡胶碳纳米管(CNTs)复合材料在包括电子皮肤、可穿戴电子设备和人体运动检测在内的各种领域具有潜在应用。基于一种新型自制的含动态空间位阻吡唑脲键的聚二甲基硅氧烷(PDMS)共价自适应网络(PDMS-CANs),通过液相吸附和沉积制备了碳纳米管包裹的PDMS-CANs(CNTs@PDMS-CANs)粉末,并成功用于选择性激光烧结(SLS)三维打印。由于SLS是一种准静态加工工艺,通过使用具有特殊碳纳米管包裹结构的PDMS粉末,SLS打印的PDMS-CANs/CNTs纳米复合材料具有高电导率和低渗流阈值,这导致形成导电隔离的碳纳米管网络。动态吡唑脲键的引入赋予材料在电热和光热刺激下的自愈合能力。此外,由于受损区域和完整区域的电阻差异,可以通过通电下的红外热成像实现裂纹诊断。在应变传感器的应用演示中,该复合材料在循环压缩和弯曲时表现出规则的循环电阻变化,表明具有相对较高的可靠性。