Several instrumental developments to examine the rheology of ultrathin confined liquids are described. These include capacitance sensing of the film thickness, concurrent measurement of normal and shear forces by piezoelectric methods, application of periodic forces in the normal direction to determine dynamic oscillatory shear moduli, and quantification of apparatus misalignment. The method to separate apparatus from sample contributions is stressed
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
International audienceWe present a nano-rheometer based on the dynamic drainage flow between a spher...
Rheological characteristics of a material can be important for wide range of industries including fo...
The design, calibration, and performance are described of an apparatus to study the shear response o...
Interfacial rheology becomes important when surface active species such as surfactants, particles, o...
Interfacial rheology becomes important when surface active species such as surfactants, particles, o...
The viscosity of liquids governs crucial physical and engineering phenomena, ranging from diffusion ...
Interfacial rheology is important for understanding properties such as Pickering emulsion or foam st...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
The design of an instrument capable of opto-mechanical studies of the rheology of viscoelastic polym...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
A new generation of the “flexure based microgap rheometer” (FMR) has been developed which is also ca...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
International audienceWe present a nano-rheometer based on the dynamic drainage flow between a spher...
Rheological characteristics of a material can be important for wide range of industries including fo...
The design, calibration, and performance are described of an apparatus to study the shear response o...
Interfacial rheology becomes important when surface active species such as surfactants, particles, o...
Interfacial rheology becomes important when surface active species such as surfactants, particles, o...
The viscosity of liquids governs crucial physical and engineering phenomena, ranging from diffusion ...
Interfacial rheology is important for understanding properties such as Pickering emulsion or foam st...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
The design of an instrument capable of opto-mechanical studies of the rheology of viscoelastic polym...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
A new generation of the “flexure based microgap rheometer” (FMR) has been developed which is also ca...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
Thin liquid films arise in many technological applications and biological phenomena. They also prese...
International audienceWe present a nano-rheometer based on the dynamic drainage flow between a spher...
Rheological characteristics of a material can be important for wide range of industries including fo...