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IIR document
Performance analyzes of an integrated phosphoric acid fuel cell and thermoelectric device system for power and cooling cogeneration.
Theoretical description of the magnetocaloric effect in Mn-Fe-P-Si alloys.
Influence of particle size on the magnetocaloric properties of Mn1.30Fe0.65P0.5Si0.5 powders.
Modelling two layer Mn–Fe–Si–P materials in an active magnetic regenerator.
Investigation of a new hybrid fuel cell–ThermoElectric generator–absorption chiller system for combined power and cooling.
Recommended by the IIR / IIR document
7th International Conference on Magnetic Refrigeration at Room Temperature (Thermag VII). Proceedings: Turin, Italy, September 11-14, 2016.
A study into the impact of chloride ions on the make-up hydrogen compressors.
Magnetic properties of the two sublattices model of Fe2P in the Landau-Ginzburg approximation.
Materials for magnetic refrigeration: structure and properties.
Experimental studies of layered AMRs using MnFeP1-xAsx.
Electronic structure calculations of ferromagnetic and paramagnetic state in magnetocaloric systems: Mn(1-x)T(x)As and Fe(2-x)T(x)P.
High-pressure sintering effect on the magnetic and magnetocaloric properties of Mn1.28Fe0.68P0.46Si0.58 compound.
Preparation and characterization of nano-scale Fe2P-based particles by surfactant-assisted high-energy ball milling.
Comparison of conventional and spark plasma sintering routes for the fabrication of room temperature magnetocaloric Mn-Fe-P-Si.
The effect of boron in the MnFe(P,As) material.