Magnetically responsive oil-in-water emulsions are effectively stabilized by a halloysite nanotube supported superparamagnetic iron oxide nanoparticle system. The attachment of the magnetically functionalized halloysite nanotubes at the oil-water interface imparts magnetic responsiveness to the emulsion and provides a steric barrier to droplet coalescence leading to emulsions that are stabilized for extended periods. Interfacial structure characterization by cryogenic scanning electron microscopy reveals that the nanotubes attach at the oil-water interface in a side on-orientation. The tubular structure of the nanotubes is exploited for the encapsulation and release of surfactant species that are typical of oil spill dispersants such as dio...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
The carbonization of hydrophilic particle surfaces provides an effective route for tuning particle w...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
Magnetically responsive oil-in-water emulsions are effectively stabilized by a halloysite nanotube s...
This work develops the concepts of particle-stabilized emulsions using tubular natural clays known a...
The use of chemical dispersants is a well-established approach to oil spill remediation where surfac...
© 2019 American Chemical Society. Halloysite nanotubes (HNTs), naturally occurring and environmental...
The integration of cationic and hydrophobic functionalities into hydrophobically modified chitosan (...
Halloysites as tubular alumosilicates are introduced as inexpensive natural nanoparticles to form an...
Halloysites as tubular alumosilicates are introduced as inexpensive natural nanoparticles to form an...
© 2018 Elsevier B.V. Halloysites (tubular aluminosilicate) are introduced as inexpensive natural nan...
The colloidal stability of halloysite clay nanotubes dispersion is reviewed showing the strategy and...
Halloysite is natural tubular clay suitable as a component of biocompatible nanosystems with specifi...
The peculiar surfaces of halloysite nanotubes and their biocompatibility are attracting the interest...
Besides surfactants, which decrease the interfacial tension between two immiscible liquids, also int...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
The carbonization of hydrophilic particle surfaces provides an effective route for tuning particle w...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
Magnetically responsive oil-in-water emulsions are effectively stabilized by a halloysite nanotube s...
This work develops the concepts of particle-stabilized emulsions using tubular natural clays known a...
The use of chemical dispersants is a well-established approach to oil spill remediation where surfac...
© 2019 American Chemical Society. Halloysite nanotubes (HNTs), naturally occurring and environmental...
The integration of cationic and hydrophobic functionalities into hydrophobically modified chitosan (...
Halloysites as tubular alumosilicates are introduced as inexpensive natural nanoparticles to form an...
Halloysites as tubular alumosilicates are introduced as inexpensive natural nanoparticles to form an...
© 2018 Elsevier B.V. Halloysites (tubular aluminosilicate) are introduced as inexpensive natural nan...
The colloidal stability of halloysite clay nanotubes dispersion is reviewed showing the strategy and...
Halloysite is natural tubular clay suitable as a component of biocompatible nanosystems with specifi...
The peculiar surfaces of halloysite nanotubes and their biocompatibility are attracting the interest...
Besides surfactants, which decrease the interfacial tension between two immiscible liquids, also int...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
The carbonization of hydrophilic particle surfaces provides an effective route for tuning particle w...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...