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Shuoshuo Wang,Wubin Chen,Lina Wang,Juming Yao,Guocheng Zhu,Baochun Guo,Jiri Militky,Mohanapriya Venkataraman,MING ZHANG 한국공업화학회 2022 Journal of Industrial and Engineering Chemistry Vol.108 No.-
Ultraviolet radiation is extremely harmful to humans and often occurs in high-temperature weather. Thedevelopment of intelligent textiles based on UV protection and thermal regulation is paramount. In thisresearch, we use coaxial electrospinning technology to prepare anti-ultraviolet smart thermo-regulatingnanofiber membranes. The zinc oxide (ZnO) and octadecane were incorporated into nanofibers with thepolyacrylonitrile (PAN)/ZnO as sheath and the octadecane as core successfully. The composite nanofibershave excellent comprehensive properties, the highest melting enthalpy is 111.38 J/g, and the UPF value is86.21. This multifunctional nanofiber membrane has broad prospects in outdoor products, electroniccomponent protection, and military products.
Zhuofan Qin,Shuoshuo Wang,Lina Wang,Juming Yao,Guocheng Zhu,Baochun Guo,Jiri Militky,Mohanapriya Venkataraman,MING ZHANG 한국공업화학회 2022 Journal of Industrial and Engineering Chemistry Vol.113 No.-
Bacteria, viruses, and temperatures change can affect the preservation of food and medicines, so it is necessaryto develop an intelligent textile for antibacterial and thermal regulation. In this paper, we usedcoaxial electrospinning technology to achieve antibacterial thermo-regulating intelligent textiles. Thepolyacrylonitrile (PAN)/curcumin is the sheath, and n-octadecane is the core. The composite fiber hasexcellent comprehensive properties. When the curcumin concentration is 10 wt%, the antibacterial effectis the best, and the bacteriostatic rate is 100%. When the core feed rate is 0.25 mL/h, the latent heat canreach 123.94 J/g. The multifunctional textiles have potential application value in the clothing fabrics,preservation and storage quality of functional foods, biomedical products, and other fields.