Home

Von dort Schnell Geschwindigkeit exchange coupled magnetic nanoparticles for efficient heat induction in Bearbeitung Jugendlicher Hafen

Magnetic properties of C, CS and CSSC nanoparticles. a) Distribution of...  | Download Scientific Diagram
Magnetic properties of C, CS and CSSC nanoparticles. a) Distribution of... | Download Scientific Diagram

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

Combining hard and soft magnetism into a single core-shell nanoparticle to  achieve both hyperthermia and image contrast | Therapeutic Delivery
Combining hard and soft magnetism into a single core-shell nanoparticle to achieve both hyperthermia and image contrast | Therapeutic Delivery

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

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

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

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

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

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

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

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

Robust antiferromagnetic coupling in hard-soft bi-magnetic core/shell  nanoparticles | Nature Communications
Robust antiferromagnetic coupling in hard-soft bi-magnetic core/shell nanoparticles | Nature Communications

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

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

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

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

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

Materials | Free Full-Text | Inductive Thermal Effect of Ferrite Magnetic  Nanoparticles | HTML
Materials | Free Full-Text | Inductive Thermal Effect of Ferrite Magnetic Nanoparticles | HTML

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

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