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- W4385830711 abstract "Composite materials hold great promise in wearable implant devices, self-healing materials, and electromagnetic shielding materials, due to the merits of flexibility, impact resistance, and low cost. Herein, a novel, conductive, anisotropic, and environmentally degradable liquid metal-polycaprolactone composite material was controllably prepared for the carrier of electronic devices, using polycaprolactone (PCL) polymer as the base, liquid metal (LM) particles with diameters of 400-500 μm as the functional droplet. By regulating the composition and ratio of LM and PCL, three composite materials were successfully obtained: LM-PCL (10 wt%)-1, LM-PCL (20 wt%)-2, and LM-PCL (40 wt%)-3. However, among the above three materials, only LM-PCL-1 was found to be an anisotropic material with conductivity on one side and insulation on the other. Many stretchable fibers could be prepared by cooling and extruding LM-PCL-1 in water. Besides, the more PCL content in LM-PCL, the higher the hardness. Finally, the degradation effects of LM-PCL in acid, alkali, and neutral aqueous solutions were systematically investigated. The degradation rate of LM-PCL was the fastest in the concentration of 10 mol/L HCL. LM in the composite material could be recycled by centrifugation. The prepared LM-PCL composites could be widely used in microelectronics and sensor parts." @default.
- W4385830711 created "2023-08-16" @default.
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- W4385830711 date "2023-08-01" @default.
- W4385830711 modified "2023-10-17" @default.
- W4385830711 title "Controllable synthesis of anisotropic liquid metal-polycaprolactone composites with high viscosity and superior degradability" @default.
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- W4385830711 doi "https://doi.org/10.1016/j.mtcomm.2023.106894" @default.
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