Center for Bio-Molecular Nanotechnologies/IIT, via Barsanti c/o STAMMS, Arnesano, LE, Italy.
Microsc Res Tech. 2010 Oct;73(10):952-8. doi: 10.1002/jemt.20848.
We present a microscopic investigation of nanocomposite films of iron oxide (γ-Fe(2)O(3)) magnetic nanowires (NWs) aligned into polymers, formed upon evaporation of solutions of acrylate polymer/magnetic nanoparticles under magnetic field (MF). The field causes the assembly of the γ-Fe(2)O(3) nanoparticles along the direction of the MF lines, resulting in magnetic NWs embedded throughout the entire volume of the polymer film. The scanning electron microscopy and the transmission electron microscopy studies show that the cylindrical-shaped NWs have ~15-μm average length and are isotropically distributed throughout the film. The study with the MF microscopy technique not only proves that the composed NWs are magnetic but also makes possible the magnetic study of each individual NW in a nondestructive way. In this way it becomes possible for the localized study of the magnetic properties alteration after the binding of various molecules onto individual NWs, opening up the way of using these films in sensor devices applied in various fields ranging from biology to environmental purposes.
我们展示了一种铁氧化物(γ-Fe(2)O(3))磁性纳米线(NWs)在磁场(MF)下,通过蒸发含有丙烯酸酯聚合物/磁性纳米粒子的溶液,排列成聚合物纳米复合材料薄膜的微观研究。磁场导致γ-Fe(2)O(3)纳米粒子沿着 MF 线的方向组装,从而在整个聚合物薄膜体积中嵌入了磁性 NWs。扫描电子显微镜和透射电子显微镜研究表明,圆柱形 NWs 的平均长度约为 15-μm,并且在整个薄膜中呈各向同性分布。MF 显微镜技术的研究不仅证明了组成的 NWs 是磁性的,而且还可以以非破坏性的方式对每个单独的 NW 进行磁性研究。这样,就有可能对各个 NW 上结合各种分子后的磁性性质改变进行局部研究,为在从生物学到环境目的等各个领域应用的传感器设备中使用这些薄膜开辟了道路。