We report an experimental and theoretical study of the rheological properties of magnetic biogels consisting of fibrin polymer networks with embedded magnetite nanoparticles, swollen by aqueous solutions. We studied two types of magnetic biogels, differenced by the presence or absence of an applied magnetic field during the initial steps of cross-linking. The experiments demonstrated very strong dependence of the elastic modulus of the magnetic biogels on the concentration of the magnetic particles. We finally developed some theoretical models that explain the observed strong concentration effects. © 2018, Springer-Verlag GmbH Germany, part of Springer Nature
Magnetic gels (ferrogels) are heterogeneous systems structured at the nanoscale that contains magnet...
This work investigates the mechanical properties, microstructures, and water-swelling behavior of a ...
The aim of the present work is first to synthesis a magnetic chitosan hydrogel (chitosan ferrogel) u...
We report an experimental and theoretical study of the rheological properties of magnetic biogels co...
We analyze the effect of nanoparticle concentration on the physical properties of magnetic hydrogels...
We analyze the effect of nanoparticle concentration on the physical properties of magnetic hydrogels...
A hydrogel is a 3-D network of polymer chains in which water is the dispersion medium. Hydrogels hav...
Magnetic hydrogels (ferrogels) are soft materials with a wide range of applications, especially in b...
A hydrogel is a 3-D network of polymer chains in which water is the dispersion medium. Hydrogels hav...
Magnetic hydrogels are becoming increasingly in demand for technical and biomedical applications, es...
Magnetorheological (MR) effect is a phenomenon typical of suspensions of magnetizable particles in a...
This study addresses the development of gel-based magnetic material in the purposes of biomedical ap...
Magnetorheological (MR) effect is a phenomenon typical of suspensions of magnetizable particles in a...
Hydrogels are widely used in biomedical applications such as drug delivery and tissue engineering. I...
The aim of the present work is first to synthesis a magnetic chitosan hydrogel (chitosan ferrogel) u...
Magnetic gels (ferrogels) are heterogeneous systems structured at the nanoscale that contains magnet...
This work investigates the mechanical properties, microstructures, and water-swelling behavior of a ...
The aim of the present work is first to synthesis a magnetic chitosan hydrogel (chitosan ferrogel) u...
We report an experimental and theoretical study of the rheological properties of magnetic biogels co...
We analyze the effect of nanoparticle concentration on the physical properties of magnetic hydrogels...
We analyze the effect of nanoparticle concentration on the physical properties of magnetic hydrogels...
A hydrogel is a 3-D network of polymer chains in which water is the dispersion medium. Hydrogels hav...
Magnetic hydrogels (ferrogels) are soft materials with a wide range of applications, especially in b...
A hydrogel is a 3-D network of polymer chains in which water is the dispersion medium. Hydrogels hav...
Magnetic hydrogels are becoming increasingly in demand for technical and biomedical applications, es...
Magnetorheological (MR) effect is a phenomenon typical of suspensions of magnetizable particles in a...
This study addresses the development of gel-based magnetic material in the purposes of biomedical ap...
Magnetorheological (MR) effect is a phenomenon typical of suspensions of magnetizable particles in a...
Hydrogels are widely used in biomedical applications such as drug delivery and tissue engineering. I...
The aim of the present work is first to synthesis a magnetic chitosan hydrogel (chitosan ferrogel) u...
Magnetic gels (ferrogels) are heterogeneous systems structured at the nanoscale that contains magnet...
This work investigates the mechanical properties, microstructures, and water-swelling behavior of a ...
The aim of the present work is first to synthesis a magnetic chitosan hydrogel (chitosan ferrogel) u...