The nanotribological properties of hydrophilic polymer brushes are conveniently analyzed by lateral force microscopy (LFM). However, the measurement of friction for highly swollen and relatively thick polymer brushes can be strongly affected by the tendency of the compliant brush to be laterally deformed by the shearing probe. This phenomenon induces a “tilting” in the recorded friction loops, which is generated by the lateral bending and stretching of the grafts. In this study we highlight how the brush lateral deformation mainly affects the friction measurements of swollen PNIPAM brushes (below LCST) when relatively short scanning distances are applied. Under these conditions, the energy dissipation recorded by LFM is almost uniquely dete...
The atomic force microscope (AFM) allows investigation of the properties of surfaces and interfaces ...
A detailed quantitative nanoscopic description of soft surfaces under dynamic flow is lacking, despi...
This preliminary study focuses on the physical alteration/manipulation of three polymer surfaces (po...
The nanotribological properties of hydrophilic polymer brushes are conveniently analyzed by lateral ...
Solvated polymer brushes are well known to lubricate high-pressure contacts, because they can sustai...
The methodology to perform friction force microscopy experiments for contacting brushes is presented...
It has been demonstrated that it is possible to create laterally differentiated frictional patternin...
The frictional properties of poly(2-(methacryloyloxy)ethylphosphorylcholine) (PMPC) brushes grown fr...
Friction force microscopy has been used to demonstrate that biocompatible, lubricious poly(2-(methac...
It has been demonstrated that it is possible to create laterally differentiated frictional patternin...
It has been demonstrated that it is possible to create laterally differentiated frictional patternin...
Friction force microscopy has been used to demonstrate that biocompatible, lubricious poly(2-(metha...
Controlling friction and adhesion is relevant in nature and in our daily life. Such control can be a...
We present a simple method to control the tribological properties of contacts between polymer brushe...
Poly(N-isopropyl acrylamide) (PNIPAM) is a stimulus-responsive polymer that can switch in water from...
The atomic force microscope (AFM) allows investigation of the properties of surfaces and interfaces ...
A detailed quantitative nanoscopic description of soft surfaces under dynamic flow is lacking, despi...
This preliminary study focuses on the physical alteration/manipulation of three polymer surfaces (po...
The nanotribological properties of hydrophilic polymer brushes are conveniently analyzed by lateral ...
Solvated polymer brushes are well known to lubricate high-pressure contacts, because they can sustai...
The methodology to perform friction force microscopy experiments for contacting brushes is presented...
It has been demonstrated that it is possible to create laterally differentiated frictional patternin...
The frictional properties of poly(2-(methacryloyloxy)ethylphosphorylcholine) (PMPC) brushes grown fr...
Friction force microscopy has been used to demonstrate that biocompatible, lubricious poly(2-(methac...
It has been demonstrated that it is possible to create laterally differentiated frictional patternin...
It has been demonstrated that it is possible to create laterally differentiated frictional patternin...
Friction force microscopy has been used to demonstrate that biocompatible, lubricious poly(2-(metha...
Controlling friction and adhesion is relevant in nature and in our daily life. Such control can be a...
We present a simple method to control the tribological properties of contacts between polymer brushe...
Poly(N-isopropyl acrylamide) (PNIPAM) is a stimulus-responsive polymer that can switch in water from...
The atomic force microscope (AFM) allows investigation of the properties of surfaces and interfaces ...
A detailed quantitative nanoscopic description of soft surfaces under dynamic flow is lacking, despi...
This preliminary study focuses on the physical alteration/manipulation of three polymer surfaces (po...