Magnetic nanoparticles that can be transported in subsurface reservoirs at high salinities and temperatures are expected to have a major impact on enhanced oil recovery, carbon dioxide sequestration, and electromagnetic imaging. Herein we report a rare example of steric stabilization of iron oxide (10) nanoparticles (NPs) grafted with poly(2-acrylamido-2-methylpropanesulfonate-co-acrylic acid) (poly-(AMPS-co-AM) that not only display colloidal stability in standard American Petroleum Institute (API) brine (8% NaCI + 2% CaCl2 by weight) at 90 C for 1 month but also resist undesirable adsorption on silica surfaces (0.4% monolayer NPs). Because the AMPS groups interacted weakly with Ca2+, they were sufficiently well solvated to provide steric ...
textThere is significant interest in applying nanoparticle (NP) science to subsurface reservoirs to ...
A library of magnetic nanoparticles was generated using in situ co-precipitation of ferrous (Fe2+) a...
Superparamagnetic iron oxide nanoparticles (SPIONs) are widely used for biological applications due ...
Magnetic nanoparticles that can be transported in subsurface reservoirs at high salinities and tempe...
The transport of engineered nanoparticles in porous media is of interest in numerous applications in...
The transport of engineered nanoparticles in porous media is of interest in numerous applications in...
A series of sulfonated random and block copolymers were adsorbed on the surface of similar to 100 nm...
A series of sulfonated random and block copolymers were adsorbed on the surface of ∼100 nm iron oxid...
Transport of metal oxide nanoparticles in porous rock is of interest for imaging and oil recovery in...
A facile “grafting through” approach was developed to tether tunable quantities of poly(2-acrylamid...
In subsurface imaging and oil recovery where temperatures and salinities are high, it is challenging...
Iron oxide nanorods are considered to be very promising platforms for biomedical applications, such ...
In this work we explore the mechanisms of ion-specific stabilization of a polysaccharide-based coati...
Random copolymer poly(AA-co-AMPS) chains were grafted covalently onto amine coated individual ~20 nm...
Iron oxide nanorods are considered to be very promising platforms for biomedical applications, such ...
textThere is significant interest in applying nanoparticle (NP) science to subsurface reservoirs to ...
A library of magnetic nanoparticles was generated using in situ co-precipitation of ferrous (Fe2+) a...
Superparamagnetic iron oxide nanoparticles (SPIONs) are widely used for biological applications due ...
Magnetic nanoparticles that can be transported in subsurface reservoirs at high salinities and tempe...
The transport of engineered nanoparticles in porous media is of interest in numerous applications in...
The transport of engineered nanoparticles in porous media is of interest in numerous applications in...
A series of sulfonated random and block copolymers were adsorbed on the surface of similar to 100 nm...
A series of sulfonated random and block copolymers were adsorbed on the surface of ∼100 nm iron oxid...
Transport of metal oxide nanoparticles in porous rock is of interest for imaging and oil recovery in...
A facile “grafting through” approach was developed to tether tunable quantities of poly(2-acrylamid...
In subsurface imaging and oil recovery where temperatures and salinities are high, it is challenging...
Iron oxide nanorods are considered to be very promising platforms for biomedical applications, such ...
In this work we explore the mechanisms of ion-specific stabilization of a polysaccharide-based coati...
Random copolymer poly(AA-co-AMPS) chains were grafted covalently onto amine coated individual ~20 nm...
Iron oxide nanorods are considered to be very promising platforms for biomedical applications, such ...
textThere is significant interest in applying nanoparticle (NP) science to subsurface reservoirs to ...
A library of magnetic nanoparticles was generated using in situ co-precipitation of ferrous (Fe2+) a...
Superparamagnetic iron oxide nanoparticles (SPIONs) are widely used for biological applications due ...