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Continuous growth phenomenon for direct synthesis of monodisperse water-soluble iron oxide nanoparticles with extraordinarily high relaxivity

机译:持续增长的现象直接合成单分散的水溶性氧化铁纳米粒子与非常高relaxivity

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摘要

The direct synthesis of highly water-soluble nanoparticles has attracted intensive interest, but systematic size control has not been reported. Here, we developed a general method for synthesizing monodisperse water-soluble iron oxide nanoparticles with nanometer-scale size increments from 4 nm to 13 nm in a single reaction. Precise size control was achieved by continuous growth in an amphiphilic solvent, diethylene glycol (DEG), where the growth step was separated from the nucleation step by sequential addition of a reactant. There was only one reactant in the synthesis and no need for additional capping agents and reducing agents. This study reveals the "living growth" character of iron oxide nanoparticles synthesised in an amphiphilic solvent. The synthetic method shows high reproducibility. The as-prepared iron oxide nanoparticles are extremely water soluble without any surface modification. Surprisingly, the synthesized 9 nm iron oxide nanoparticles exhibit extremely high transversal and longitudinal relaxivities of 425 mM(-1)s(-1)and 32 mM(-1)s(-1)respectively, which is among the highest transversal relaxivity in the literature for sub-10 nm spherical nanoparticles. This study will not only shed light on the continuous growth phenomenon of iron oxide nanoparticles in an amphiphilic solvent, but could also stimulate the synthesis and application of iron oxide nanoparticles. The continuous growth method could be further extended to other materials for the controlled synthesis of water-soluble nanoparticles.
机译:高度水溶性的直接合成纳米粒子吸引了密集的兴趣,但是没有系统的大小控制报道。合成单分散的水溶性铁氧化物纳米粒子与纳米级大小从4到13 nm增量单身的反应。持续增长的两亲性溶剂,二甘醇(度),生长台阶的地方被分开成核一步顺序添加反应物。在合成和不需要一个反应物额外的限制代理和减少代理。本研究揭示了“生活增长”的性格氧化铁纳米粒子合成的两亲性溶剂。高重现性。纳米颗粒非常水溶性任何表面改性。9合成纳米氧化铁纳米粒子展览极高的横向和纵向relaxivities 425毫米(1)(1)和32毫米(1)(1)分别是最高的横向relaxivity文学sub-10纳米球形纳米粒子。不仅能揭示持续增长氧化铁纳米颗粒的现象两亲性溶剂,但也可能刺激铁氧化物的合成和应用纳米粒子。被进一步扩展到其他材料水溶性的可控合成纳米粒子。

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