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超顺磁氧化铁纳米粒子簇体的磁性组装:纳米链和纳米束。

Magnetic Assembly of Superparamagnetic Iron Oxide Nanoparticle Clusters into Nanochains and Nanobundles.

机构信息

Department for Materials Synthesis, Jožef Stefan Institute , Jamova 39, 1000 Ljubljana, Slovenia.

Nanos SCI, Nanos Scientificae d.o.o. , Teslova 30, 1000 Ljubljana, Slovenia.

出版信息

ACS Nano. 2015 Oct 27;9(10):9700-7. doi: 10.1021/acsnano.5b02328. Epub 2015 Sep 24.

Abstract

We report on the syntheses of magnetoresponsive, superparamagnetic nanostructures with highly anisotropic shapes, i.e., nanochains of controlled length and their bundles (nanobundles). These nanochains and nanobundles were obtained by the simultaneous magnetic assembly of superparamagnetic nanoparticle clusters (SNCs) and the fixation of the assembled SNCs with an additional layer of deposited silica, produced by a sol-gel process. This low-cost approach provides excellent length control of the short nanochains (approximately 6 or 14 SNCs per nanochain) and fine-tuning of the spacing between the neighboring SNCs inside an individual nanochain. Our magnetically responsive superparamagnetic nanostructures have a controlled aspect ratio, a uniform size, and a well-defined shape, and they express good colloidal stability. This general approach should lead to new, advanced applications of the nanochains and nanobundles in the treatment of cancer and in the ability to magnetically manipulate liquid and photonic crystals.

摘要

我们报告了具有高各向异性形状的磁响应性、超顺磁纳米结构的合成,即纳米链的长度可控及其束(纳米束)。这些纳米链和纳米束是通过超顺磁纳米颗粒簇(SNC)的同时磁组装和通过溶胶-凝胶工艺产生的附加沉积二氧化硅层固定组装的 SNC 来获得的。这种低成本方法可极好地控制短纳米链(每个纳米链约有 6 或 14 个 SNC)的长度,并精细调整单个纳米链内相邻 SNC 之间的间距。我们的磁响应超顺磁纳米结构具有可控的纵横比、均匀的尺寸和明确的形状,并表现出良好的胶体稳定性。这种通用方法应该会导致纳米链和纳米束在癌症治疗和磁性操控液体和光子晶体方面的新的、先进的应用。

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