磁性聚乙烯醇在外加磁场下的热效应和光催化性能

M. Khowdiary, Hind Alsnani, Mohamed S. A. Darwish
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摘要

磁性聚合物成分具有良好的物理和化学特性,可将其智能行为扩展到材料应用领域。事实上,研究磁性纳米填料以确保其在聚合物基质中的均匀分散仍然是目前面临的巨大挑战。在这项工作中,采用超声波辅助共沉淀法在室温下制备了聚乙烯醇稳定的氧化铁纳米粒子(PVA@IONPs)。该方法可以制备出具有理想形状和尺寸的 PVA@IONPs,从而能够在外部磁场下控制其热效应和光催化性能。PVA@IONPs 的饱和磁化率(45.08 emu g-1)提高到了 IONPs 的水平(41.93 emu g-1)。PVA@IONPs 具有良好的光催化性能和出色的自加热性能。在可见光和磁力作用下,光催化剂 PVA@IONPs 的产氢量为 60 mmole min-1 g-1。此外,在相同的磁场条件下,PVA@IONPs 比 IONPs 表现出更高的比吸收率(SAR)。PVA@IONPs 具有优异的自加热和光催化性能,是生物医学和环境应用的理想材料。
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Hyperthermia and Photocatalytic Performance of Magnetic Polyvinyl Alcohol under External Magnetic Field
The promising physical and chemical properties of components of magnetic polymers could enable extending their intelligent behaviors to material applications. Indeed, investigation into magnetic nanofillers to ensure their uniform dispersion within the polymer matrix remains a great challenge at present. In this work, polyvinyl alcohol-stabilized iron oxide nanoparticles (PVA@IONPs) were prepared using ultrasonic-assisted coprecipitation at room temperature. It is possible to produce PVA@IONPs with desirable shapes and sizes, which would enable the control of their hyperthermia and photocatalytic performance under an external magnetic field. The saturation magnetization of PVA@IONPs (45.08 emu g−1) was enhanced to the level of IONPs (41.93 emu g−1). The PVA@IONPs showed good photocatalytic and outstanding self-heating behavior. The hydrogen yield was 60 mmole min−1 g−1 for photocatalyst PVA@IONPs under visible light with magnetic force. In addition, the PVA@IONPs exhibited a higher specific absorption rate (SAR) than IONPs under the same magnetic field conditions. The PVA@IONPs displayed superior self-heating and photocatalytic performances, rendering them appropriate materials for biomedical and environmental applications.
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