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tief Glück Bringen exchange coupled magnetic nanoparticles for efficient heat induction aufschieben Starker Wind Evakuierung

Effect of magnetic dipolar interactions on nanoparticle heating efficiency:  Implications for cancer hyperthermia | Scientific Reports
Effect of magnetic dipolar interactions on nanoparticle heating efficiency: Implications for cancer hyperthermia | Scientific Reports

Carbothermal treated iron oxide nanoparticles with improving magnetic  heating efficiency for hyperthermia - ScienceDirect
Carbothermal treated iron oxide nanoparticles with improving magnetic heating efficiency for hyperthermia - ScienceDirect

Comprehensive understanding of magnetic hyperthermia for improving  antitumor therapeutic efficacy
Comprehensive understanding of magnetic hyperthermia for improving antitumor therapeutic efficacy

Nanoscale magnetization in magnetic nanoparticles. a-f) Magnetic... |  Download Scientific Diagram
Nanoscale magnetization in magnetic nanoparticles. a-f) Magnetic... | Download Scientific Diagram

Review on magnetic nanoparticle-mediated hyperthermia for cancer therapy |  SpringerLink
Review on magnetic nanoparticle-mediated hyperthermia for cancer therapy | SpringerLink

Mild Magnetic Hyperthermia-Activated Innate Immunity for Liver Cancer  Therapy | Journal of the American Chemical Society
Mild Magnetic Hyperthermia-Activated Innate Immunity for Liver Cancer Therapy | Journal of the American Chemical Society

Cobalt magnetic nanoparticles as theranostics: Conceivable or forgettable?
Cobalt magnetic nanoparticles as theranostics: Conceivable or forgettable?

Comprehensive understanding of magnetic hyperthermia for improving  antitumor therapeutic efficacy
Comprehensive understanding of magnetic hyperthermia for improving antitumor therapeutic efficacy

Inductive Heating with Magnetic Materials inside Flow Reactors - Ceylan -  2011 - Chemistry – A European Journal - Wiley Online Library
Inductive Heating with Magnetic Materials inside Flow Reactors - Ceylan - 2011 - Chemistry – A European Journal - Wiley Online Library

Experimental estimation and analysis of variance of the measured loss power  of magnetic nanoparticles | Scientific Reports
Experimental estimation and analysis of variance of the measured loss power of magnetic nanoparticles | Scientific Reports

Flower-like Mn-Doped Magnetic Nanoparticles Functionalized with  αvβ3-Integrin-Ligand to Efficiently Induce Intracellular Heat after  Alternating Magnetic Field Exposition, Triggering Glioma Cell Death | ACS  Applied Materials & Interfaces
Flower-like Mn-Doped Magnetic Nanoparticles Functionalized with αvβ3-Integrin-Ligand to Efficiently Induce Intracellular Heat after Alternating Magnetic Field Exposition, Triggering Glioma Cell Death | ACS Applied Materials & Interfaces

Nanomaterials | Free Full-Text | Fundamentals to Apply Magnetic  Nanoparticles for Hyperthermia Therapy | HTML
Nanomaterials | Free Full-Text | Fundamentals to Apply Magnetic Nanoparticles for Hyperthermia Therapy | HTML

Exchange-coupled magnetic nanoparticles for efficient heat induction |  Nature Nanotechnology
Exchange-coupled magnetic nanoparticles for efficient heat induction | Nature Nanotechnology

Nanoscale Heat Transfer from Magnetic Nanoparticles and Ferritin in an  Alternating Magnetic Field - ScienceDirect
Nanoscale Heat Transfer from Magnetic Nanoparticles and Ferritin in an Alternating Magnetic Field - ScienceDirect

Inductive Thermal Effect of Ferrite Magnetic Nanoparticles. - Abstract -  Europe PMC
Inductive Thermal Effect of Ferrite Magnetic Nanoparticles. - Abstract - Europe PMC

Anomalous Magnetic Properties of Nanoparticles Arising from Defect  Structures: Topotaxial Oxidation of Fe1–xO|Fe3−δO4 Core|Shell Nanocubes to  Single-Phase Particles | ACS Nano
Anomalous Magnetic Properties of Nanoparticles Arising from Defect Structures: Topotaxial Oxidation of Fe1–xO|Fe3−δO4 Core|Shell Nanocubes to Single-Phase Particles | ACS Nano

Exchange-coupled magnetic nanoparticles for efficient heat induction |  Nature Nanotechnology
Exchange-coupled magnetic nanoparticles for efficient heat induction | Nature Nanotechnology

Materials | Free Full-Text | Nanoparticles for Magnetic Heating: When Two  (or More) Is Better Than One | HTML
Materials | Free Full-Text | Nanoparticles for Magnetic Heating: When Two (or More) Is Better Than One | HTML

The role of dipole interactions in hyperthermia heating colloidal clusters  of densely-packed superparamagnetic nanoparticles | Scientific Reports
The role of dipole interactions in hyperthermia heating colloidal clusters of densely-packed superparamagnetic nanoparticles | Scientific Reports

Nanoscale Heat Transfer from Magnetic Nanoparticles and Ferritin in an  Alternating Magnetic Field - ScienceDirect
Nanoscale Heat Transfer from Magnetic Nanoparticles and Ferritin in an Alternating Magnetic Field - ScienceDirect

IJMS | Free Full-Text | Tuning the Magnetic Properties of Nanoparticles |  HTML
IJMS | Free Full-Text | Tuning the Magnetic Properties of Nanoparticles | HTML

Magnetically Induced CO2 Methanation Using Exchange‐Coupled Spinel Ferrites  in Cuboctahedron‐Shaped Nanocrystals - Rivas‐Murias - 2020 - Angewandte  Chemie - Wiley Online Library
Magnetically Induced CO2 Methanation Using Exchange‐Coupled Spinel Ferrites in Cuboctahedron‐Shaped Nanocrystals - Rivas‐Murias - 2020 - Angewandte Chemie - Wiley Online Library

Magnetochemistry | Free Full-Text | Finding the Limits of Magnetic  Hyperthermia on Core-Shell Nanoparticles Fabricated by Physical Vapor  Methods | HTML
Magnetochemistry | Free Full-Text | Finding the Limits of Magnetic Hyperthermia on Core-Shell Nanoparticles Fabricated by Physical Vapor Methods | HTML

Ultra-high rate of temperature increment from superparamagnetic  nanoparticles for highly efficient hyperthermia | Scientific Reports
Ultra-high rate of temperature increment from superparamagnetic nanoparticles for highly efficient hyperthermia | Scientific Reports

Characterization of Néel and Brownian Relaxations Isolated from Complex  Dynamics Influenced by Dipole Interactions in Magnetic Nanoparticles | The  Journal of Physical Chemistry C
Characterization of Néel and Brownian Relaxations Isolated from Complex Dynamics Influenced by Dipole Interactions in Magnetic Nanoparticles | The Journal of Physical Chemistry C