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具有不对称表面化学的氧化铁纳米球的线性纳米链组装。

Assembly of linear nano-chains from iron oxide nanospheres with asymmetric surface chemistry.

机构信息

Department of Biomedical Engineering and Department of Radiology, Case Center for Imaging Research, Case Western Reserve University, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2011 Jan 6;6(1):e15927. doi: 10.1371/journal.pone.0015927.

Abstract

Besides the multifunctionality, another equally important aspect of nanoparticles is their engineerability to control the geometrical and chemical properties during fabrication. In this work, we exploited this aspect to define asymmetric surface chemistry of an iron oxide nanosphere by controlling the topology of ligand expression on its surface resulting in a particle with two faces, one displaying only amines and the other only thiols. Specifically, amine-functionalized iron oxide nanospheres were attached on a solid support via a crosslinker containing a disulfide bridge. Liberation of the nanosphere using thiolytic cleavage created thiols on the portion of the particle's surface that interacted with the solid support. Employing a solid-phase strategy and a step-by-step addition of particles, the two unique faces on the same nanosphere served as fittings to assemble them into linear nano-chains. Assembly of chains with various lengths and aspect ratios was controlled by the size and number of the added nanospheres. The characteristics of those chains showed a high degree of uniformity indicating the exceptional control of the synthetic process. Notably, one of the unique properties of the iron oxide nano-chains was an increased magnetic relaxivity, indicating their potential use as contrast agents for magnetic resonance imaging.

摘要

除多功能性外,纳米粒子的另一个同样重要的方面是其可在制造过程中控制几何和化学性质的可设计性。在这项工作中,我们利用这一方面通过控制表面配体表达的拓扑结构来定义氧化铁纳米球的不对称表面化学,从而得到一个具有两面的粒子,一面只显示胺,另一面只显示硫醇。具体来说,通过含有二硫键的交联剂将胺功能化的氧化铁纳米球附着在固体载体上。使用硫醇裂解释放纳米球,在与固体载体相互作用的粒子表面部分生成硫醇。通过采用固相策略和逐步添加粒子的方法,同一纳米球上的两个独特表面充当配件,将它们组装成线性纳米链。通过添加的纳米球的大小和数量来控制链的长度和纵横比。这些链的特性表现出高度的均匀性,表明对合成过程的控制非常出色。值得注意的是,氧化铁纳米链的一个独特性质是增加了磁弛豫率,表明它们有潜力用作磁共振成像的造影剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd3c/3017086/c2988475fbd5/pone.0015927.g001.jpg

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