纳米复合材料
材料科学
磁铁矿
纳米颗粒
制作
磁性纳米粒子
化学工程
聚乙烯醇
傅里叶变换红外光谱
纳米技术
磁铁
表征(材料科学)
粒径
磁化
复合数
磁粉探伤
乙烯醇
粒子(生态学)
聚合物
饱和(图论)
扩散
复合材料
作者
Anderson Fernández,Omar Gutiérrez,Tiffany Marín,O. Oscar Arnache
标识
DOI:10.1177/08927057261424773
摘要
Stimuli-responsive nanocomposite systems have emerged as promising platforms for the development of externally actuated devices in both biomedical and environmental applications. In this study, polyvinyl alcohol (PVA)/magnetite nanoparticle (MNP) nanocomposite fibers were successfully fabricated via electrospinning. Magnetite nanoparticles were synthesized electrochemically at room temperature using a non-toxic electrolyte, thereby supporting an environmentally sustainable approach. Structural and magnetic characterization confirmed the formation of the magnetite (Fe 3 O 4 ) phase, with particle sizes predominantly in the 12–20 nm range and a saturation magnetization value of 79.3 emu/g. The incorporation of MNPs into the PVA matrix yielded uniform fibers with a 27% increase in average diameter, as confirmed by SEM–EDX. FTIR analyses demonstrated that the polymer’s chemical structure remained unchanged and nanoparticle oxidation was minimal, preserving magnetic functionality. The PVA/MNP nanocomposites were evaluated in a diffusion cell containing an acetaminophen solution for 3.5 h, using a permanent magnet with a field strength of 0.5 T (Tesla) as a remote-control stimulus, resulting in a control of diffused 35 %. The nanocomposites exhibited magnetically triggered drug release behavior, indicating their potential for application in controlled release systems with external control of formulation. These findings establish PVA/MNP nanocomposites as viable candidates for magnetically stimuli-responsive systems.
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