This work describes the preparation of ternary nanoparticles based on the Heusler compound Co2FeGa. Nanoparticles with sizes of about 20 nm were synthesized by reducing a methanol impregnated mixture of CoCl2 center dot 6H(2)O, Fe(NO3)(3) center dot 9H(2)O and Ga(NO3)(3) center dot xH(2)O after loading on fumed silica. The dried samples were heated under pure H-2 gas at 900 degrees C. The obtained nanoparticles-embedded in silica-were investigated by means of x-ray diffraction (XRD), transmission electron microscopy, temperature dependent magnetometry and Mossbauer spectroscopy. All methods clearly revealed the Heusler-type L2(1) structure of the nanoparticles. In particular, anomalous XRD data demonstrate the correct composition in additio...
Co-2-based Heusler compounds with 27.8 valence electrons exhibit an exceptional electronic structure...
This work reports on the structure of Fe containing, Co2-based Heusler compounds that are suitable f...
Spintronic is a multidisciplinary field and a new research area. New materials must be found for sat...
This work describes the preparation of ternary nanoparticles based on the Heusler compound Co2FeGa. ...
Heusler Materialien wurden bisher vor allem in Volumen- und Dünnfilmproben aufgrund ihrer technische...
This chapter is addressing the physical impact of ferromagnetic Heusler entities when approaching th...
In this contribution, we report the chemical synthesis of carbon coated, silica supported Co2FeGa (C...
Co2FeGa-SiO2 nanocompounds were chemically synthesized by using SBA-15 as template, which has the L2...
A facile synthesis approach for the synthesis of ternary intermetallic nanocrystals was demonstrated...
The long and short range order of chemically prepared Co2FeGa Heusler nanoparticles with various siz...
We report the structural and magnetic properties of chemically synthesized dual-phase Co2NiGa shape ...
Phase transitions and magnetic properties of shape-memory materials can be tailored by tuning the si...
We report the first study on the chemical preparation, structural characterization, and magnetic pro...
We report the first study on the chemical preparation, structural characterization, and magnetic pro...
Wang C, Meyer J, Teichert N, et al. Heusler nanoparticles for spintronics and ferromagnetic shape me...
Co-2-based Heusler compounds with 27.8 valence electrons exhibit an exceptional electronic structure...
This work reports on the structure of Fe containing, Co2-based Heusler compounds that are suitable f...
Spintronic is a multidisciplinary field and a new research area. New materials must be found for sat...
This work describes the preparation of ternary nanoparticles based on the Heusler compound Co2FeGa. ...
Heusler Materialien wurden bisher vor allem in Volumen- und Dünnfilmproben aufgrund ihrer technische...
This chapter is addressing the physical impact of ferromagnetic Heusler entities when approaching th...
In this contribution, we report the chemical synthesis of carbon coated, silica supported Co2FeGa (C...
Co2FeGa-SiO2 nanocompounds were chemically synthesized by using SBA-15 as template, which has the L2...
A facile synthesis approach for the synthesis of ternary intermetallic nanocrystals was demonstrated...
The long and short range order of chemically prepared Co2FeGa Heusler nanoparticles with various siz...
We report the structural and magnetic properties of chemically synthesized dual-phase Co2NiGa shape ...
Phase transitions and magnetic properties of shape-memory materials can be tailored by tuning the si...
We report the first study on the chemical preparation, structural characterization, and magnetic pro...
We report the first study on the chemical preparation, structural characterization, and magnetic pro...
Wang C, Meyer J, Teichert N, et al. Heusler nanoparticles for spintronics and ferromagnetic shape me...
Co-2-based Heusler compounds with 27.8 valence electrons exhibit an exceptional electronic structure...
This work reports on the structure of Fe containing, Co2-based Heusler compounds that are suitable f...
Spintronic is a multidisciplinary field and a new research area. New materials must be found for sat...