Small magnetic nanoparticles that have surfaces decorated with stimuli-responsive polymers can be reversibly aggregated via a stimulus, such as temperature, to enable efficient and rapid biomarker separation. To fully realize the potential of these particles, the synthesis needs to be highly reproducible and scalable to large quantity. We have developed a new synthesis for temperature-responsive magnetic nanoparticles via an in situ co-precipitation process of Fe2+/Fe3+ salts at room temperature with poly(acrylic acid)-block-poly(N-isopropylacrylamide) diblock co-polymer template, synthesized via the reversible addition–fragmentation chain-transfer polymerization method. These particles were 56% polymer by weight with a 6.5:1 Fe/COOH rati...
Magnetic nanoparticles (MPs) were synthesized using the co-precipitation method, with methyl acrylic...
Magnetic particle hyperthermia (MPH) is a promising method for cancer treatment using magnetic nanop...
Protein-conjugated magnetic nanoparticles (mNPs) are promising tools for a variety of biomedical app...
Astimuli-responsive magnetic nanoparticle system for diagnostic target capture and concentration has...
Magnetic particles have gained increasing interest as smart materials because of their potential to ...
In recent years, with the rapid development of pharmaceutical industry, the stimuli-responsive parti...
In recent years, magnetic nanoparticles have been studied due to their potential applications as mag...
Various temperature-responsive N-isopropylacrylamide-based functional copolymers were prepared and u...
Over the last decade there has been increased interest in "nanotechnology". A variety of supermolecu...
AbstractIn recent years, magnetic nanoparticles have been studied due to their potential application...
Magnetic microbeads exhibit rapid separation characteristics and are widely employed for biomolecule...
Magnetic particles (MPs) are of great interest in many varied applications in the fields of biotechn...
University of Minnesota Ph.D. dissertation. December 2012. Major: Electrical Engineering. Advisor: J...
Multifunctional drug delivery systems incorporated with stimuli-sensitive drug release, magnetic nan...
Thermoresponsive magnetic nanoparticles (MNPs) were synthesized using a magnetosome display system. ...
Magnetic nanoparticles (MPs) were synthesized using the co-precipitation method, with methyl acrylic...
Magnetic particle hyperthermia (MPH) is a promising method for cancer treatment using magnetic nanop...
Protein-conjugated magnetic nanoparticles (mNPs) are promising tools for a variety of biomedical app...
Astimuli-responsive magnetic nanoparticle system for diagnostic target capture and concentration has...
Magnetic particles have gained increasing interest as smart materials because of their potential to ...
In recent years, with the rapid development of pharmaceutical industry, the stimuli-responsive parti...
In recent years, magnetic nanoparticles have been studied due to their potential applications as mag...
Various temperature-responsive N-isopropylacrylamide-based functional copolymers were prepared and u...
Over the last decade there has been increased interest in "nanotechnology". A variety of supermolecu...
AbstractIn recent years, magnetic nanoparticles have been studied due to their potential application...
Magnetic microbeads exhibit rapid separation characteristics and are widely employed for biomolecule...
Magnetic particles (MPs) are of great interest in many varied applications in the fields of biotechn...
University of Minnesota Ph.D. dissertation. December 2012. Major: Electrical Engineering. Advisor: J...
Multifunctional drug delivery systems incorporated with stimuli-sensitive drug release, magnetic nan...
Thermoresponsive magnetic nanoparticles (MNPs) were synthesized using a magnetosome display system. ...
Magnetic nanoparticles (MPs) were synthesized using the co-precipitation method, with methyl acrylic...
Magnetic particle hyperthermia (MPH) is a promising method for cancer treatment using magnetic nanop...
Protein-conjugated magnetic nanoparticles (mNPs) are promising tools for a variety of biomedical app...