Cationic colloidal unimolecular polymer (CUP) particles were prepared by using a lower concentration of the quaternary ammonium functional copolymers during the process of water reduction. True nanoscale (diameter 3-9 nm), zero-volatile organic content (VOC), spheroidal CUP particles, and self-stabilized via electro-repulsion of surface cationic groups were obtained. the viscosity of the cationic CUP systems was influenced by the electroviscous effects arising from the surface charge and the associated surface water layer. the density of surface water was 1.6 % greater than the bulk water density which was attributed to the structuring of water around charged quaternary ammonium groups. the equilibrium surface tension values decreased linea...
Surfactant-free seeded (core-shell) polymerization of cationic polymer colloids is presented. Polyst...
The gel point of a colloidal unimolecular polymer (CUP) aqueous suspension was determined. The zero-...
The formation of colloidal unimolecular polymer (CUP) particles from single polymer strands was inve...
Colloidal Unimolecular Polymer (CUP) particles were prepared by water-reduction of copolymers of met...
Colloidal Unimolecular Polymer (CUP) particles are 3-9 nm size single-chain polymer nanoparticles th...
Colloidal Unimolecular Polymer (CUP) particles were prepared by the process of water reduction on am...
The rheological characteristics of anionic colloidal unimolecular polymer (CUP) particles in water w...
Colloidal Unimolecular Polymer, CUP, particles were synthesized and characterized as a potential new...
“Colloidal Unimolecular Polymer (CUP) is spheroidal nanoscale polymer particle (3-9 nm) with charged...
Colloidal unimolecular polymer (CUP) particles were made using polymers with different ratios of hyd...
Studies of the interfacial behavior of pure aqueous nanoparticles have been limited due tothe diffic...
Colloidal Unimolecular Polymer (CUP) particles are a new genre of material formed by self-assembly i...
The surface tension of Colloidal Unimolecular Polymer (CUP) suspensions at the air/ water interface ...
Colloidal unimolecular polymer (CUP) particles were prepared by the process of water reduction on co...
Surfactant-free seeded (core-shell) polymerization of cationic polymer colloids is presented. Polyst...
Surfactant-free seeded (core-shell) polymerization of cationic polymer colloids is presented. Polyst...
The gel point of a colloidal unimolecular polymer (CUP) aqueous suspension was determined. The zero-...
The formation of colloidal unimolecular polymer (CUP) particles from single polymer strands was inve...
Colloidal Unimolecular Polymer (CUP) particles were prepared by water-reduction of copolymers of met...
Colloidal Unimolecular Polymer (CUP) particles are 3-9 nm size single-chain polymer nanoparticles th...
Colloidal Unimolecular Polymer (CUP) particles were prepared by the process of water reduction on am...
The rheological characteristics of anionic colloidal unimolecular polymer (CUP) particles in water w...
Colloidal Unimolecular Polymer, CUP, particles were synthesized and characterized as a potential new...
“Colloidal Unimolecular Polymer (CUP) is spheroidal nanoscale polymer particle (3-9 nm) with charged...
Colloidal unimolecular polymer (CUP) particles were made using polymers with different ratios of hyd...
Studies of the interfacial behavior of pure aqueous nanoparticles have been limited due tothe diffic...
Colloidal Unimolecular Polymer (CUP) particles are a new genre of material formed by self-assembly i...
The surface tension of Colloidal Unimolecular Polymer (CUP) suspensions at the air/ water interface ...
Colloidal unimolecular polymer (CUP) particles were prepared by the process of water reduction on co...
Surfactant-free seeded (core-shell) polymerization of cationic polymer colloids is presented. Polyst...
Surfactant-free seeded (core-shell) polymerization of cationic polymer colloids is presented. Polyst...
The gel point of a colloidal unimolecular polymer (CUP) aqueous suspension was determined. The zero-...
The formation of colloidal unimolecular polymer (CUP) particles from single polymer strands was inve...