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IIR document
Theoretical description of the magnetocaloric effect in Mn-Fe-P-Si alloys.
Modelling two layer Mn–Fe–Si–P materials in an active magnetic regenerator.
Influence of particle size on the magnetocaloric properties of Mn1.30Fe0.65P0.5Si0.5 powders.
Performance analyzes of an integrated phosphoric acid fuel cell and thermoelectric device system for power and cooling cogeneration.
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.
Effect of lubricating oil additives on compressor explosion accident in pump-down operation of an air conditioner.
Effect of reaction inhibitor on diesel explosion of split air conditioners
Materials for magnetic refrigeration: structure and properties.
Magnetic properties of the two sublattices model of Fe2P in the Landau-Ginzburg approximation.
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.