The detection of superparamagnetic nanoparticles by magnetic force microscopy (MFM) at the single particle level faces difficulties such as superposition of nonmagnetic signals caused by electrostatic interactions as well as reaching the resolution limits due to small magnetic interactions. In MFM the magnetic force is measured at a certain distance to the substrate following the topography measured in a first scan to avoid an influence of short range forces (lift mode). In this work we showed that performing MFM on superparamagnetic nanoparticles the increase of the tip-substrate distance above the nanoparticle in lift mode scans leads to a reduction of the electrostatic forces resulting in a positive phase shift in contrast to the negativ...
Resumen del trabajo presentado en la 11th International Conference on Nanomaterials: Applications an...
Magnetic force microscopy (MFM) refers to a family of scanning probe techniques based on atomic for...
High-resolution characterization of nanomagnetic elements was exploited by a novel method. Dual-Tip ...
The development of magnetic nanoparticles for biomedical applications requires a detailed characteri...
Magnetic force microscopy (MFM) has become a widely used tool for the characterization of magnetic p...
Magnetic force microscopy (MFM) has been demonstrated as valuable technique for the characterizatio...
Magnetic force microscopy (MFM) is a widely-used technique for measuring the local magnetic properti...
Magnetic force microscopy (MFM) is a widely-used technique for measuring the local magnetic properti...
Magnetic force microscopy (MFM) is a variant of atomic force microscopy (AFM), in which a probe with...
We present quantitative, high spatially resolved magnetic force microscopy imaging of samples based ...
We present quantitative, high spatially resolved magnetic force microscopy imaging of samples based ...
Presented here is a summary of the improvements made to a standard magnetic force microscope for the...
We report the results of magnetic force microscopy (MFM) investigations of low-coercivity Co nanodis...
Abstract. In this chapter Magnetic Force Microscopy is treated in detail. The emphasis is on high re...
High-resolution characterization of nanomagnetic elements was exploited by a novel method. Dual-Tip ...
Resumen del trabajo presentado en la 11th International Conference on Nanomaterials: Applications an...
Magnetic force microscopy (MFM) refers to a family of scanning probe techniques based on atomic for...
High-resolution characterization of nanomagnetic elements was exploited by a novel method. Dual-Tip ...
The development of magnetic nanoparticles for biomedical applications requires a detailed characteri...
Magnetic force microscopy (MFM) has become a widely used tool for the characterization of magnetic p...
Magnetic force microscopy (MFM) has been demonstrated as valuable technique for the characterizatio...
Magnetic force microscopy (MFM) is a widely-used technique for measuring the local magnetic properti...
Magnetic force microscopy (MFM) is a widely-used technique for measuring the local magnetic properti...
Magnetic force microscopy (MFM) is a variant of atomic force microscopy (AFM), in which a probe with...
We present quantitative, high spatially resolved magnetic force microscopy imaging of samples based ...
We present quantitative, high spatially resolved magnetic force microscopy imaging of samples based ...
Presented here is a summary of the improvements made to a standard magnetic force microscope for the...
We report the results of magnetic force microscopy (MFM) investigations of low-coercivity Co nanodis...
Abstract. In this chapter Magnetic Force Microscopy is treated in detail. The emphasis is on high re...
High-resolution characterization of nanomagnetic elements was exploited by a novel method. Dual-Tip ...
Resumen del trabajo presentado en la 11th International Conference on Nanomaterials: Applications an...
Magnetic force microscopy (MFM) refers to a family of scanning probe techniques based on atomic for...
High-resolution characterization of nanomagnetic elements was exploited by a novel method. Dual-Tip ...