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水热条件下 Fe3O4 纳米粒子作为 3D 磁性纳米粒子簇构建块的生长-溶解-再生长转变。

Growth-dissolution-regrowth transitions of Fe3O4 nanoparticles as building blocks for 3D magnetic nanoparticle clusters under hydrothermal conditions.

机构信息

Institute of Biomaterials, College of Sciences, South China Agricultural University , Guangzhou 510642, P. R. China.

出版信息

Langmuir. 2013 Dec 10;29(49):15433-41. doi: 10.1021/la403577y. Epub 2013 Nov 27.

Abstract

Magnetic nanoparticle clusters (MNCs) are a class of secondary structural materials that comprise chemically defined nanoparticles assembled into clusters of defined size. Herein, MNCs are fabricated through a one-pot solvothermal reaction featuring self-limiting assembly of building blocks and the controlled reorganization process. Such growth-dissolution-regrowth fabrication mechanism overcomes some limitations of conventional solvothermal fabrication methods with regard to restricted available feature size and structural complexity, which can be extended to other oxides (as long as one can be chelated by EDTA-2Na). Based on this method, the nanoparticle size of MNCs is tuned between 6.8 and 31.2 nm at a fixed cluster diameter of 120 nm, wherein the critical size for superparamagnetic-ferromagnetic transition is estimated from 13.5 to 15.7 nm. Control over the nature and secondary structure of MNCs gives an excellent model system to understand the nanoparticle size-dependent magnetic properties of MNCs. MNCs have potential applications in many different areas, while this work evaluates their cytotoxicity and Pb(2+) adsorption capacity as initial application study.

摘要

磁性纳米粒子簇(MNCs)是一类二级结构材料,由化学定义的纳米粒子组装成具有确定尺寸的簇。在此,通过一锅溶剂热反应制备了 MNCs,该反应具有自限制的构建块组装和可控的重组过程。这种生长-溶解-再生长的制造机制克服了传统溶剂热制造方法在可用特征尺寸和结构复杂性方面的一些限制,并且可以扩展到其他氧化物(只要可以与 EDTA-2Na 螯合)。基于这种方法,在固定的 120nm 簇直径下,MNCs 的纳米颗粒尺寸在 6.8nm 至 31.2nm 之间进行调节,其中超顺磁-铁磁转变的临界尺寸估计为 13.5nm 至 15.7nm。对 MNCs 的性质和二级结构的控制为理解 MNCs 的纳米颗粒尺寸依赖性磁性提供了一个极好的模型系统。MNCs 在许多不同领域都有潜在的应用,而这项工作评估了它们的细胞毒性和 Pb(2+)吸附能力,作为初步应用研究。

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