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Vibrational response of clusters of Fe3O4 nanoparticles patterned on glass surfaces investigated with magnetic sample modulation AFM

机译:振动响应Fe3O4的集群纳米粒子有图案的玻璃表面调查与磁调制AFM示例

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The vibration of Fe3O4 nanoparticles in response to an alternating magnetic field can be sensitively detected using contact mode atomic force microscopy (AFM) combined with selective modulation of magnetic domains. While imaging patterned samples of magnetic nanoparticles with contact mode AFM, a magnetic field was applied to drive sample vibration. The field altered in polarity and strength according to parameters of an AC current applied to a solenoid located under the sample. The vibration of Fe3O4 nanoparticles was detected by a nonmagnetic AFM tip to map the changes in frequency and amplitude of the vibrating sample at the level of individual Fe3O4 nanoparticles and clusters. Colloidal lithography, was used to prepare patterns of Fe3O4 nanoparticles on a glass surface using the basic steps of mixing, drying and removing the surface template of latex spheres. Monodisperse latex spheres were used to guide the deposition of magnetic nanoparticles in the spaces between the close-packed spheres of the latex film. With a mixture approach of two-particle lithography, 2D arrays of patterned aggregates of metal nanoparticles were generated which formed a periodic, well-defined arrangement that was suitable for subsequent characterizations with magnetic sample modulation (MSM).
机译:Fe3O4纳米粒子的振动响应一个交变磁场敏感地发现使用接触模式原子力显微镜(AFM)与选择性相结合调制磁域。有图案的样品的磁性纳米颗粒接触模式下AFM,施加一个磁场振动驱动示例。根据参数的极性和强度一个交流电流应用于电磁定位样例。是由一个非磁性检测AFM提示映射的频率和振幅的变化振动探针在个别Fe3O4的水平纳米颗粒和集群。光刻技术,被用来准备的模式Fe3O4纳米粒子在玻璃表面使用基本步骤混合、干燥和删除乳胶球表面模板。乳胶球被用来指导沉积磁性纳米颗粒之间的空间乳胶膜的拥挤不堪的球体。混合粒子光刻的方法,二维数组的金属的聚合物纳米粒子形成一个生成这是周期性的,明确的安排适用于后续的特征磁性样品调制(MSM)。

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