The structures of pristine halloysite nanotubes (HNTs) and ones functionalized by anionic surfactants (sodium dodecanoate and sodium dodecyl sulfate) were investigated by small angle neutron scattering (SANS). These experiments evidenced the structural organization of the surfactants adsorbed onto the HNT cavity and the importance of the surfactant headgroup. Contrast matching experiments were employed in order to mask the dominant scattering effect of the clay hollow nanotubes and to focus on the surfactant organization within the lumen. Further investigation on the mesoscopic structure of the investigated materials was carried out by electric birefringence (EBR), which allowed study of the rotational mobility of both pristine and function...
The peculiar surfaces of halloysite nanotubes and their biocompatibility are attracting the interest...
Halloysite nanoclays (HNTs) are promising nanomaterials because of their versatile properties, such ...
Selective fatty acid hydrophobization of the inner surface of tubule halloysite clay is demonstrated...
The structures of pristine halloysite nanotubes (HNTs) and ones functionalized by anionic surfactant...
Halloysite clay nanotubes are functionalized by exploiting the different charges between the inner p...
Hypothesis: Electrostatic attractions between the anionic head group of sodium alkylsulphates and th...
Halloysite clay nanotubes are functionalized by exploiting the different charges between the inner p...
The structural properties of halloysite/biopolymer aqueous mixtures were firstly investigated by mea...
The colloidal stability of halloysite clay nanotubes dispersion is reviewed showing the strategy and...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
The filling of halloysite nanotubes with active compounds solubilized in aqueous solvent was investi...
Herein, we report our recent research concerning the development of halloysite based protocols for c...
An easy strategy to obtain nanohydrogels within the halloysite nanotube (HNTs) lumen was investigate...
The long term stability of natural halloysite nanotubes was studied at room temperature (22 ± 2 ºC) ...
The peculiar surfaces of halloysite nanotubes and their biocompatibility are attracting the interest...
Halloysite nanoclays (HNTs) are promising nanomaterials because of their versatile properties, such ...
Selective fatty acid hydrophobization of the inner surface of tubule halloysite clay is demonstrated...
The structures of pristine halloysite nanotubes (HNTs) and ones functionalized by anionic surfactant...
Halloysite clay nanotubes are functionalized by exploiting the different charges between the inner p...
Hypothesis: Electrostatic attractions between the anionic head group of sodium alkylsulphates and th...
Halloysite clay nanotubes are functionalized by exploiting the different charges between the inner p...
The structural properties of halloysite/biopolymer aqueous mixtures were firstly investigated by mea...
The colloidal stability of halloysite clay nanotubes dispersion is reviewed showing the strategy and...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
An easy strategy to obtain inorganic reverse micelles based on halloysite nanotubes (HNTs) and alkyl...
The filling of halloysite nanotubes with active compounds solubilized in aqueous solvent was investi...
Herein, we report our recent research concerning the development of halloysite based protocols for c...
An easy strategy to obtain nanohydrogels within the halloysite nanotube (HNTs) lumen was investigate...
The long term stability of natural halloysite nanotubes was studied at room temperature (22 ± 2 ºC) ...
The peculiar surfaces of halloysite nanotubes and their biocompatibility are attracting the interest...
Halloysite nanoclays (HNTs) are promising nanomaterials because of their versatile properties, such ...
Selective fatty acid hydrophobization of the inner surface of tubule halloysite clay is demonstrated...