<sup>57</sup>Fe nuclear magnetic resonance (NMR) of magnetite nanocrystals ranging in size from 7 nm to 7 μm is measured. The line width of the NMR spectra changes drastically around 120 K, showing microscopic evidence of the Verwey transition. In the region above the transition temperature, the line width of the spectrum increases and the spin–spin relaxation time decreases as the nanocrystal size decreases. The line-width broadening indicates the significant deformation of magnetic structure and reduction of charge order compared to bulk crystals, even when the structural distortion is unobservable. The reduction of the spin–spin relaxation time is attributed to the suppressed polaron hopping conductivity in ferromagnetic metals, which is...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
Magnetite (Fe<sub>3</sub>O<sub>4</sub>) is one of the most actively studied materials with a famous ...
Fe-57 nuclear magnetic resonance (NMR) of magnetite nanocrystals ranging in size from 7 nm to 7 ym i...
57Fe nuclear magnetic resonance (NMR) of magnetite nanocrystals ranging in size from 7 nm to 7 μm is...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
Magnetite (Fe3O4) is one of the most actively studied materials with a famous metal.insulator transi...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
Tunneling transport measurements performed on single particles and on arrays of $\chem{Fe_{3}O_{4}}$...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
The magnetic properties of biologically produced magnetite nanocrystals biomineralized by four diffe...
Magnetite (Fe3O4) is one of the most actively studied materials with a famous metal insulator transi...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
Magnetite (Fe<sub>3</sub>O<sub>4</sub>) is one of the most actively studied materials with a famous ...
Fe-57 nuclear magnetic resonance (NMR) of magnetite nanocrystals ranging in size from 7 nm to 7 ym i...
57Fe nuclear magnetic resonance (NMR) of magnetite nanocrystals ranging in size from 7 nm to 7 μm is...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
Magnetite (Fe3O4) is one of the most actively studied materials with a famous metal.insulator transi...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
Tunneling transport measurements performed on single particles and on arrays of $\chem{Fe_{3}O_{4}}$...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
The magnetic properties of biologically produced magnetite nanocrystals biomineralized by four diffe...
Magnetite (Fe3O4) is one of the most actively studied materials with a famous metal insulator transi...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
NMR on 57Fe nuclei was measured in two single crystals of magnetite between 4.2 and 135 K (temperatu...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
Magnetite (Fe<sub>3</sub>O<sub>4</sub>) is one of the most actively studied materials with a famous ...