Magnetic cooling is a highly efficient refrigeration technique with the potential to replace the traditional vapor compression cycle. It is based on the magnetocaloric effect, which is associated with the temperature change of a material when placed in a magnetic field. We present experimental evidence for the origin of the giant entropy change found in the most promising materials, in the form of an electronic reconstruction caused by the competition between magnetism and bonding. The effect manifests itself as a redistribution of the electron density, which was measured by X-ray absorption and diffraction on MnFe(P,Si,B). The electronic redistribution is consistent with the formation of a covalent bond, resulting in a large drop in the Fe...
The energy-efficient and environmentally friendly alternative cooling technology based on the magnet...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
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...
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 ...
Large magnetically driven temperature changes are observed in MnFe(P,Si,B) materials simultaneously ...
Modern society relies on cooling technology for food safety, comfort and medical applications. The s...
Domestic and industrial refrigeration applications contribute a substantial part to mankinds energy ...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
Modern society relies on cooling technology for food safety, comfort and medical applications. The s...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
The energy-efficient and environmentally friendly alternative cooling technology based on the magnet...
The energy-efficient and environmentally friendly alternative cooling technology based on the magnet...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...
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...
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 ...
Large magnetically driven temperature changes are observed in MnFe(P,Si,B) materials simultaneously ...
Modern society relies on cooling technology for food safety, comfort and medical applications. The s...
Domestic and industrial refrigeration applications contribute a substantial part to mankinds energy ...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
Modern society relies on cooling technology for food safety, comfort and medical applications. The s...
The efficient coupling between lattice degrees of freedom and spin degrees of freedom in magnetic ma...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
The energy-efficient and environmentally friendly alternative cooling technology based on the magnet...
The energy-efficient and environmentally friendly alternative cooling technology based on the magnet...
Limited resources and the wish for improved prosperity call for efficient use of energy. The UN Advi...
We report on structural, magnetic, and magnetocaloric properties of MnxFe1.95?xP0.50Si0.50 (x???1.10...