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galéria rovnako spálený magnetic nanosensors based on magnetocaloric effect rekord pútnik prikrývka

Magnetocaloric materials with ultra-small magnetic nanoparticles working at  room temperature | Scientific Reports
Magnetocaloric materials with ultra-small magnetic nanoparticles working at room temperature | Scientific Reports

Lanthanide Contraction in Action: Structural Variations in 13  Lanthanide(III) Thiophene-2,5-dicarboxylate Coordination Polymers (Ln =  La–Lu, Except Pm and Tm) Featuring Magnetocaloric Effect, Slow Magnetic  Relaxation, and Luminescence-Lifetime-based ...
Lanthanide Contraction in Action: Structural Variations in 13 Lanthanide(III) Thiophene-2,5-dicarboxylate Coordination Polymers (Ln = La–Lu, Except Pm and Tm) Featuring Magnetocaloric Effect, Slow Magnetic Relaxation, and Luminescence-Lifetime-based ...

Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through  size modifications | SpringerLink
Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through size modifications | SpringerLink

Nanoparticles-based magnetic and photo induced hyperthermia for cancer  treatment - ScienceDirect
Nanoparticles-based magnetic and photo induced hyperthermia for cancer treatment - ScienceDirect

Nanomaterials | Free Full-Text | Magnetocaloric Effect, Structure, Spinodal  Decomposition and Phase Transformations Heusler Alloy Ni-Mn-In
Nanomaterials | Free Full-Text | Magnetocaloric Effect, Structure, Spinodal Decomposition and Phase Transformations Heusler Alloy Ni-Mn-In

Multifield and inverse‐contrast switching of magnetocaloric high contrast  ratio MRI labels - Barbic - 2021 - Magnetic Resonance in Medicine - Wiley  Online Library
Multifield and inverse‐contrast switching of magnetocaloric high contrast ratio MRI labels - Barbic - 2021 - Magnetic Resonance in Medicine - Wiley Online Library

Magnetocaloric Properties of Fe-Ni-Cr Nanoparticles for Active Cooling |  Scientific Reports
Magnetocaloric Properties of Fe-Ni-Cr Nanoparticles for Active Cooling | Scientific Reports

a) Field-up and field-down isothermal magnetization M(H) curves and... |  Download Scientific Diagram
a) Field-up and field-down isothermal magnetization M(H) curves and... | Download Scientific Diagram

Crystals | Free Full-Text | Review of the Magnetocaloric Effect in RMnO3  and RMn2O5 Multiferroic Crystals
Crystals | Free Full-Text | Review of the Magnetocaloric Effect in RMnO3 and RMn2O5 Multiferroic Crystals

The rotating magnetocaloric effect as a potential mechanism for natural  magnetic senses | PLOS ONE
The rotating magnetocaloric effect as a potential mechanism for natural magnetic senses | PLOS ONE

Magnetocaloric Effect in Nanosystems Based on Ferromagnets with Different  Curie Temperatures | SpringerLink
Magnetocaloric Effect in Nanosystems Based on Ferromagnets with Different Curie Temperatures | SpringerLink

Research
Research

PDF) Magnetocaloric effect in bamboo-grained Ni-Mn-Ga microwires over a  wide working temperature interval
PDF) Magnetocaloric effect in bamboo-grained Ni-Mn-Ga microwires over a wide working temperature interval

Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through  size modifications | SpringerLink
Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through size modifications | SpringerLink

Temperature dependence of the magnetic moment for annealed at 773 K... |  Download Scientific Diagram
Temperature dependence of the magnetic moment for annealed at 773 K... | Download Scientific Diagram

Crystals | Free Full-Text | Review of the Magnetocaloric Effect in RMnO3  and RMn2O5 Multiferroic Crystals
Crystals | Free Full-Text | Review of the Magnetocaloric Effect in RMnO3 and RMn2O5 Multiferroic Crystals

Nanomaterials | Free Full-Text | Magnetic Properties and Magnetocaloric  Effect of Polycrystalline and Nano-Manganites Pr0.65Sr(0.35−x)CaxMnO3  (x ≤ 0.3)
Nanomaterials | Free Full-Text | Magnetic Properties and Magnetocaloric Effect of Polycrystalline and Nano-Manganites Pr0.65Sr(0.35−x)CaxMnO3 (x ≤ 0.3)

Taking the Temperature of the Interiors of Magnetically Heated  Nanoparticles | ACS Nano
Taking the Temperature of the Interiors of Magnetically Heated Nanoparticles | ACS Nano

Taking the Temperature of the Interiors of Magnetically Heated  Nanoparticles | ACS Nano
Taking the Temperature of the Interiors of Magnetically Heated Nanoparticles | ACS Nano

Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through  size modifications | SpringerLink
Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through size modifications | SpringerLink

Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through  size modifications | SpringerLink
Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through size modifications | SpringerLink

Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through  size modifications | SpringerLink
Tuning magnetic and magnetocaloric properties of Pr0.6Sr0.4MnO3 through size modifications | SpringerLink

The rotating magnetocaloric effect as a potential mechanism for natural  magnetic senses | PLOS ONE
The rotating magnetocaloric effect as a potential mechanism for natural magnetic senses | PLOS ONE

Sensors | Free Full-Text | Fiber Bragg Grating Dilatometry in Extreme  Magnetic Field and Cryogenic Conditions
Sensors | Free Full-Text | Fiber Bragg Grating Dilatometry in Extreme Magnetic Field and Cryogenic Conditions