首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >An Efficient and Highly Versatile Synthetic Route to Prepare Iron Oxide Nanoparticles/Nanocomposites with Tunable Morphologies
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An Efficient and Highly Versatile Synthetic Route to Prepare Iron Oxide Nanoparticles/Nanocomposites with Tunable Morphologies

机译:一种高效且高度通用的合成路线,以制备形态可调的氧化铁纳米颗粒/纳米复合材料

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We report a versatile synthetic method for the in situ self-assembly of magnetic-nanoparticle-functionalized polymeric nanomorphologies, including spherical micelles and rod-like and worm-like micelles and vesicles. Poly-(oligoethylene glycol methacrylate)-block-(methacrylic acid)-block-poly(styrene) (POEGMA-b-PMAA-b-PST) triblock copolymer chains were simultaneously propagated and self-assembled via a polymerization-induced self-assembly (PISA) approach. Subsequently, the carboxylic acid groups in the copolymers were used to complex an iron ion (Fe~(II)/Fe~(III)) mixture. Iron oxide nanoparticles were then formed in the central block, within the polymeric nanoparticles, via alkaline coprecipitation of the iron(II) and (III) salts. Nanoparticle morphologies, particle sizes, molecular weights, and chemical structures were then characterized by transmission electron microscopy (TEM), dynamic light scattering (DLS), size exclusion chromatography (SEC), and ~1H NMR measurements. TEM micrographs showed that the average size of the magnetic nanoparticles was ~7 nm at the hydrophobic/hydrophilic nexus contained within the nanoparticles. In addition, XRD was used to confirm the formation of iron oxide nanoparticles. Importantly, the polymeric nanoparticle morphologies were not affected by the coprecipitation of the magnetic nanoparticles. The hybrid nanoparticles were then evaluated as negative MRI contrast agents, displaying remarkably high transverse relaxivities (r_2, greater than 550 mM~(-1) s~(-1) at 9.4 T); a result, that we hypothesize, ensues from iron oxide nanoparticle clustering at the hydrophobic-hydrophilic interface. This simple synthetic procedure is highly versatile and produces nanocarriers of tunable size and shape with high efficacy as MRI contrast agents and potential utility as theranostic delivery vectors.
机译:我们报告了一种通用的合成方法,用于磁性纳米粒子功能化的聚合物纳米形态的原位自组装,包括球形胶束,棒状和蠕虫状的胶束和囊泡。聚(低聚乙二醇甲基丙烯酸甲酯)-嵌段-(甲基丙烯酸)-嵌段-聚(苯乙烯)(POEGMA-b-PMAA-b-PST)三嵌段共聚物链通过聚合诱导的自组装同时传播和自组装(PISA)方法。随后,使用共聚物中的羧酸基络合铁离子(Fe〜(II)/ Fe〜(III))混合物。然后,通过铁(II)和(III)盐的碱性共沉淀,在聚合物纳米颗粒内的中心嵌段中形成氧化铁纳米颗粒。然后通过透射电子显微镜(TEM),动态光散射(DLS),尺寸排阻色谱(SEC)和〜1H NMR测量来表征纳米颗粒的形貌,粒径,分子量和化学结构。 TEM显微照片显示,磁性纳米颗粒的平均尺寸在纳米颗粒内所含的疏水/亲水连接处约为〜7 nm。另外,使用XRD来确认氧化铁纳米颗粒的形成。重要的是,聚合物纳米颗粒的形态不受磁性纳米颗粒共沉淀的影响。然后将杂化纳米颗粒评估为阴性MRI造影剂,表现出明显高的横向弛豫度(r_2,在9.4 T下大于550 mM〜(-1)s〜(-1));我们假设的结果来自于疏水-亲水界面处的氧化铁纳米粒子簇。这种简单的合成方法用途广泛,可生产大小和形状可调的纳米载体,作为MRI造影剂具有很高的功效,并且可以作为治疗治疗的载体。

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