利用改良共沉淀法合成核壳介孔氧化铁磁性纳米粒子并确定其特性

Q4 Earth and Planetary Sciences Research Journal of Chemistry and Environment Pub Date : 2023-11-05 DOI:10.25303/2712rjce051056
Venkata Satya A. Madhu Latha, C. Darwin
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引用次数: 0

摘要

近年来,纳米技术的发展是一门通过提高药物的兼容性、有效性和疗效来实现给药的艺术。在所有纳米粒子中,磁性纳米粒子在利用磁场进行靶向给药方面起着主导作用,还有助于诊断癌症等疾病。本研究以 Pluronic 嵌段聚合物 P123 为表面活性剂模板,然后采用共沉淀法加入氧化铁,制备了四种不同的介孔纳米粒子。利用傅立叶变换红外光谱(FTIR)、X 射线衍射(XRD)、HRSEM 和元素图谱技术对形成的介孔磁性纳米粒子的结构特征进行了检测。X 射线衍射(XRD)结果表明,氧化铁纳米粒子在孔隙中形成后,所形成的复合材料保持了有序的介孔结构。傅立叶变换红外光谱(FTIR)结果表明,材料表面含有硅醇基和 Fe-O,峰值分别为 1060 cm-1 和 1020 cm-1。扫描电子显微镜(SEM)结果表明,尺寸在 50 至 100nm 范围内的所有介孔磁性纳米粒子都具有规则的球形。这些颗粒具有高表面积、高孔隙率,并在外部磁场存在的情况下显示出足以实现药物靶向的磁响应。元素图谱数据显示了介孔材料中所有元素的百分比。我们得出的结论是,所有四种类型的磁性纳米粒子在结构上都排列整齐,粒子表面的元素比例充足,尺寸范围良好。在所有类型的磁性纳米粒子中进一步添加药物决定了药物的负载效率、稳定性和释放性质。
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Synthesis and Characterization of Core-Shell Mesoporous Iron oxide Magnetic Nanoparticles using Modified Co-Precipitation Method
In recent era, development of nanotechnology is an art of delivery of drug by improving its compatibility, effectiveness and efficacy. Among all nanoparticles, magnetic nanoparticles play a predominant role to shows their targeted drug delivery using a magnetic field, also helps to diagnose the diseases like cancer. The present study included preparation of four different mesoporous nanoparticles using the Pluronic block copolymer P123 as a surfactant template, then insert iron oxides using co-precipitation method. The resulted formed mesoporous magnetic nanoparticles are examined for structural characters by using FTIR, XRD, HRSEM and Elemental Mapping techniques. The results of X-ray diffraction (XRD) showed that the formed composites conserved ordered mesoporous structure after the formation of iron oxide nanoparticles in the pores. FTIR results indicated that the surface contains silanol group and Fe–O on the surface of the materials at 1060 cm-1 and 1020 cm-1 peaks respectively. Scanning electron microscopy (SEM) results showed that all mesoporous magnetic nanoparticles within the range of size from 50 to 100nm also possessed a regular spherical shape. These particles possessed high surface area, high pore volume and showed magnetic response sufficient for drug targeting in the presence of an external magnetic field. Elemental mapping data indicated about the percentage of all elements present in the mesoporous materials. We concluded that all four types of magnetic nanoparticles are structurally arranged in their structure with sufficient percentage of elements on their particle surface along with good size range. Further loading of drug into all types of magnetic nanoparticles decides the loading efficiency, stability and drug release nature.
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CiteScore
0.50
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发文量
195
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4-8 weeks
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