Co-2-based Heusler compounds with 27.8 valence electrons exhibit an exceptional electronic structure that makes them interesting materials for the application in spintronics. Co2Cr0.6Fe0.4Al is the most prominent example of this particular family of compounds. In this article new materials of this class are tested with respect to their structural and magnetic properties. X-ray diffraction, Mossbauer spectroscopy, energy dispersive X-ray spectroscopy, and SQUID magnetometry were carried out to characterize the compounds. The use of Co2Fe0.45Ti0.55Ge as a new material in spintronic devices is suggested
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
Spintronic is a multidisciplinary field and a new research area. New materials must be found for sat...
The properties of the Heusler compound Co2TiAl were investigated in detail by experimental technique...
Co-2-based Heusler compounds with 27.8 valence electrons exhibit an exceptional electronic structure...
Heusler compounds are promising candidates for future spintronics device applications. The electroni...
Heusler compounds are promising candidates for future spintronics device applications. The electroni...
Heusler compounds are promising candidates for future spintronics device applications. The electroni...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
In the last years, the class of cobalt-based full Heusler compounds was subject to intensive researc...
Materials, which display large changes in resistivity in response to an applied magnetic field (magn...
Heusler compounds are a remarkable class of materials with more than 1000 members and a wide range o...
Employing ab initio electronic structure calculations, we study a new class of magnetic Heusler comp...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
Spintronic is a multidisciplinary field and a new research area. New materials must be found for sat...
The properties of the Heusler compound Co2TiAl were investigated in detail by experimental technique...
Co-2-based Heusler compounds with 27.8 valence electrons exhibit an exceptional electronic structure...
Heusler compounds are promising candidates for future spintronics device applications. The electroni...
Heusler compounds are promising candidates for future spintronics device applications. The electroni...
Heusler compounds are promising candidates for future spintronics device applications. The electroni...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
In the last years, the class of cobalt-based full Heusler compounds was subject to intensive researc...
Materials, which display large changes in resistivity in response to an applied magnetic field (magn...
Heusler compounds are a remarkable class of materials with more than 1000 members and a wide range o...
Employing ab initio electronic structure calculations, we study a new class of magnetic Heusler comp...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
This work reports on the electronic and crystalline structure and the mechanical, magnetic, and tran...
Spintronic is a multidisciplinary field and a new research area. New materials must be found for sat...
The properties of the Heusler compound Co2TiAl were investigated in detail by experimental technique...