A new method was developed for preparing monodisperse Fe3O4@SiO2 magnetic core-shell nanoparticles via three steps. The obtained nanoparticles exhibit high saturation magnetization, good surface topography and dispersion as characterized by FTIR, SEM and VSM. The experimental results of hydrochloric acid treatment show that the obtained nanoparticles have excellent acid resistance and stable and compact silicon coating. The magnetic core-shell nanoparticles were further tested for purification of plasmid DNA from E. coli DH5a cells. The result of purification leaded to better adsorption, elution and purity results in comparison with isolated commercial extraction kit
To monitor and manage hydrological systems such as brooks, streams, rivers, the use of tracers is a ...
To monitor and manage hydrological systems such as brooks, streams, rivers, the use of tracers is a ...
The aim of this study is to prepare poly(hydroxyethyl methacrylate-N- methacryloyl-(L)-histidine) [P...
A new method was developed for preparing monodisperse Fe3O4@SiO2 magnetic core-shell nanoparticles v...
The rapid purification of biomaterials such as DNA, RNA, and antibodies has attracted extensive atte...
Magnetic Fe3O4 nanoparticles were prepared by coprecipitation and then coated with silica. These Fe3...
This study focuses on the synthesize of magnetic nanoparticles (MNPs) that can be used practically i...
Abstract: Magnetic separation technology, using magnetic particles, is quick and easy method for se...
In this dataset we integrated figures related to bacterial transformation using pBI121 plasmid and c...
Core–shell Fe3O4@SiO2 nanoparticles were prepared with a modified Stöber method and functionalized w...
International audienceIn the biotechnology field, nanoparticles with a strong magnetic moment can br...
Objectives: The project is based on extensive studies on applied nanoparticles in biology and medici...
The polyelectrolyte–DNA complexation method to form magnetoplexes using silica-coated iron oxide mag...
A method to encapsulate DNA in heat-resistant and inert magnetic particles was developed. An inexpen...
Superparamagnetic Fe3O4 nanoparticles (NPs) based nanomaterials have been exploited in various biote...
To monitor and manage hydrological systems such as brooks, streams, rivers, the use of tracers is a ...
To monitor and manage hydrological systems such as brooks, streams, rivers, the use of tracers is a ...
The aim of this study is to prepare poly(hydroxyethyl methacrylate-N- methacryloyl-(L)-histidine) [P...
A new method was developed for preparing monodisperse Fe3O4@SiO2 magnetic core-shell nanoparticles v...
The rapid purification of biomaterials such as DNA, RNA, and antibodies has attracted extensive atte...
Magnetic Fe3O4 nanoparticles were prepared by coprecipitation and then coated with silica. These Fe3...
This study focuses on the synthesize of magnetic nanoparticles (MNPs) that can be used practically i...
Abstract: Magnetic separation technology, using magnetic particles, is quick and easy method for se...
In this dataset we integrated figures related to bacterial transformation using pBI121 plasmid and c...
Core–shell Fe3O4@SiO2 nanoparticles were prepared with a modified Stöber method and functionalized w...
International audienceIn the biotechnology field, nanoparticles with a strong magnetic moment can br...
Objectives: The project is based on extensive studies on applied nanoparticles in biology and medici...
The polyelectrolyte–DNA complexation method to form magnetoplexes using silica-coated iron oxide mag...
A method to encapsulate DNA in heat-resistant and inert magnetic particles was developed. An inexpen...
Superparamagnetic Fe3O4 nanoparticles (NPs) based nanomaterials have been exploited in various biote...
To monitor and manage hydrological systems such as brooks, streams, rivers, the use of tracers is a ...
To monitor and manage hydrological systems such as brooks, streams, rivers, the use of tracers is a ...
The aim of this study is to prepare poly(hydroxyethyl methacrylate-N- methacryloyl-(L)-histidine) [P...