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Zn induced surface modification of stable goethite nanoparticles for improved regenerative phosphate adsorption
Zn induced surface modification of stable goethite nanoparticles for improved regenerative phosphate adsorption
Advanced Magnetocaloric Materials for Energy Conversion
Advanced Magnetocaloric Materials for Energy Conversion: Recent Progress, Opportunities, and Perspective
Structural and magnetic properties of YNi4-xCoxSi alloys
Structural and magnetic properties of YNi4-xCoxSi alloys
Memory effect in photochromic rare-earth oxyhydride thin films studied by in situ positron annihilation spectroscopy upon photodarkening-bleaching cycling
Memory effect in photochromic rare-earth oxyhydride thin films studied by in situ positron annihilation spectroscopy upon photodarkening-bleaching cycling
Nano-structuring of all-d-metal NiCoMnTi-based Heusler compounds
Nano-structuring of all-d-metal NiCoMnTi-based Heusler compounds
Seasonal COP of a residential magnetocaloric heat pump based on MnFePSi
Seasonal COP of a residential magnetocaloric heat pump based on MnFePSi
Magnetocaloric properties of Mn<sub>5</sub>(Si,P)B<sub>2</sub> compounds for energy harvesting applications
Magnetocaloric properties of Mn5(Si,P)B2 compounds for energy harvesting applications
Impact of fast-solidification on all-d-metal NiCoMnTi based giant magnetocaloric Heusler compounds
Impact of fast-solidification on all-d-metal NiCoMnTi based giant magnetocaloric Heusler compounds
Giant magnetocaloric effect for (Mn, Fe, V)2(P, Si) alloys with low hysteresis
Giant magnetocaloric effect for (Mn, Fe, V)2(P, Si) alloys with low hysteresis
Impact of W doping on Fe-rich (Mn,Fe)<sub>2</sub>(P,Si) based giant magnetocaloric materials
Impact of W doping on Fe-rich (Mn,Fe)2(P,Si) based giant magnetocaloric materials
Effect of the heat treatment on the microstructure, magnetism and magnetocaloric effect in Fe-rich (Mn,Fe)<sub>y</sub>(P,Si) melt-spun ribbons
Effect of the heat treatment on the microstructure, magnetism and magnetocaloric effect in Fe-rich (Mn,Fe)y(P,Si) melt-spun ribbons
Effect of off-stoichiometry and Ta doping on Fe-rich (Mn,Fe)<sub>2</sub>(P,Si) based giant magnetocaloric materials
Effect of off-stoichiometry and Ta doping on Fe-rich (Mn,Fe)2(P,Si) based giant magnetocaloric materials
Layering strategies for active magnetocaloric regenerators using MnFePSi for heat pump applications
Layering strategies for active magnetocaloric regenerators using MnFePSi for heat pump applications
Strong magnetoelastic coupling in MnCoSi compounds studied in pulsed magnetic fields
Strong magnetoelastic coupling in MnCoSi compounds studied in pulsed magnetic fields
Effect of goethite doping using elements with different preferential oxidation states for improved reversible phosphate adsorption
Effect of goethite doping using elements with different preferential oxidation states for improved reversible phosphate adsorption
FeOOH and (Fe,Zn)OOH hybrid anion exchange adsorbents for phosphate recovery
FeOOH and (Fe,Zn)OOH hybrid anion exchange adsorbents for phosphate recovery: A determination of Fe-phases and adsorption–desorption mechanisms
Exploring the negative thermal expansion and magnetocaloric effect in Fe<sub>2</sub>(Hf,Ti) Laves phase materials
Exploring the negative thermal expansion and magnetocaloric effect in Fe2(Hf,Ti) Laves phase materials
Competing magnetic interactions, structure and magnetocaloric effect in Mn<sub>3</sub>Sn<sub>1-x</sub>Zn<sub>x</sub>C antiperovskite carbides
Competing magnetic interactions, structure and magnetocaloric effect in Mn3Sn1-xZnxC antiperovskite carbides
Magnetoelastic transition and negative thermal expansion of Fe<sub>2</sub>Hf<sub>0.83</sub>Ta<sub>0.17</sub> ribbons
Magnetoelastic transition and negative thermal expansion of Fe2Hf0.83Ta0.17 ribbons
Formation of vacancies and metallic-like domains in photochromic rare-earth oxyhydride thin films studied by in-situ illumination positron annihilation spectroscopy
Formation of vacancies and metallic-like domains in photochromic rare-earth oxyhydride thin films studied by in-situ illumination positron annihilation spectroscopy
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