The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic materials can be used for refrigeration and energy conversion. This coupling is enhanced in materials exhibiting the giant magnetocaloric effect. First principle electronic structure calculations on hexagonal MnFe(P, Si) reveal a new form of magnetism: the coexistence of strong and weak magnetism in alternate atomic layers. The weak magnetism of Fe layers (disappearance of local magnetic moments at the Curie temperature) is responsible for a strong coupling with the crystal lattice while the strong magnetism in adjacent Mn-layers ensures Curie temperatures high enough to enable operation at and above room temperature. Varying the composition on...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
Amongst magnetic materials that exhibit a giant magnetocaloric effect near room temperature, the(Mn,...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
Large magnetically driven temperature changes are observed in MnFe(P,Si,B) materials simultaneously ...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
Large magnetically driven temperature changes are observed in MnFe(P,Si,B) materials simultaneously ...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
Amongst magnetic materials that exhibit a giant magnetocaloric effect near room temperature, the(Mn,...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
Large magnetically driven temperature changes are observed in MnFe(P,Si,B) materials simultaneously ...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
Large magnetically driven temperature changes are observed in MnFe(P,Si,B) materials simultaneously ...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the tra...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
Amongst magnetic materials that exhibit a giant magnetocaloric effect near room temperature, the(Mn,...