Thumbnail image of graphical abstract Alkyne- and azide-functionalized iron oxide nanoparticles are co-assembled at the water–oil interface and covalently linked using click chemistry under ambient conditions to create magnetic colloidosomes (see image). These colloidosomes possess high stability, size-selective permeability, and are responsive toward external magnetic stimuli
Multifunctional magnetic nanoparticles have shown great promise as next-generation imaging and pertu...
Iron oxide nanostructures have been widely developed for biomedical applications, due to their magn...
Long-term colloidal stability of magnetic iron oxide nanoparticles (NPs) is an important goal that h...
Amphiphiles alter the energy of surfaces, but the extent of this feature is typically constant. Smar...
Over the last decade there has been increased interest in "nanotechnology". A variety of supermolecu...
Directed self-assembly of nanomaterials via external fields is an attractive processing tool for ind...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
A study was conducted to demonstrate continuous hydrothermal synthesis of in situ functionalized iro...
Water solubility and surface functionalization of magnetic nanoparticles are crucial for bioapplicat...
Colloidal Microcapsules (MCs), i.e. capsules stabilized by nano-/microparticle shells are highly mod...
One- or two-dimensional arrays of iron oxide nanoparticles were formed in colloidal assemblies of am...
<p>We have studied the dynamic behavior of nanoparticles in ferrofluids consisting of single-domain,...
The functionalization of magnetite (Fe3O4) nanoparticles with dopamine-derived clickable biomimetic ...
The assembly of magnetic cores into regular structures may notably influence the properties displaye...
We report the synthesis, characterization, and covalent surface chemistry of "magnetomicelles", cros...
Multifunctional magnetic nanoparticles have shown great promise as next-generation imaging and pertu...
Iron oxide nanostructures have been widely developed for biomedical applications, due to their magn...
Long-term colloidal stability of magnetic iron oxide nanoparticles (NPs) is an important goal that h...
Amphiphiles alter the energy of surfaces, but the extent of this feature is typically constant. Smar...
Over the last decade there has been increased interest in "nanotechnology". A variety of supermolecu...
Directed self-assembly of nanomaterials via external fields is an attractive processing tool for ind...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
A study was conducted to demonstrate continuous hydrothermal synthesis of in situ functionalized iro...
Water solubility and surface functionalization of magnetic nanoparticles are crucial for bioapplicat...
Colloidal Microcapsules (MCs), i.e. capsules stabilized by nano-/microparticle shells are highly mod...
One- or two-dimensional arrays of iron oxide nanoparticles were formed in colloidal assemblies of am...
<p>We have studied the dynamic behavior of nanoparticles in ferrofluids consisting of single-domain,...
The functionalization of magnetite (Fe3O4) nanoparticles with dopamine-derived clickable biomimetic ...
The assembly of magnetic cores into regular structures may notably influence the properties displaye...
We report the synthesis, characterization, and covalent surface chemistry of "magnetomicelles", cros...
Multifunctional magnetic nanoparticles have shown great promise as next-generation imaging and pertu...
Iron oxide nanostructures have been widely developed for biomedical applications, due to their magn...
Long-term colloidal stability of magnetic iron oxide nanoparticles (NPs) is an important goal that h...