The elastic deformation of a soft solid induced by capillary forces crucially relies on the excess stress inside the solid-liquid interface. While for a liquid-liquid interface this "surface stress" is strictly identical to the "surface free energy," the thermodynamic Shuttleworth equation implies that this is no longer the case when one of the phases is elastic. Here we develop a microscopic model that incorporates enthalpic interactions and entropic elasticity, based on which we explicitly compute as the surface stress and surface free energy. It is found that the compressibility of the interfacial region, through the Poisson ratio near the interface, determines the difference between surface stress and surface energy. We highlight the co...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
152 pagesThis dissertation presents part of my recent effort to understand complex surface mechanica...
The capillary forces exerted by liquid drops and bubbles on a soft solid are directly measured using...
\u3cp\u3eExtremely compliant elastic materials, such as thin membranes or soft gels, can be deformed...
The surface free energy, or surface tension, of a liquid interface gives rise to a pressure jump whe...
Surface stress and surface energy are fundamental quantities which characterize the interface betwee...
Surface stress and surface energy are physical quantities characterizing the interface between mater...
The dynamic properties of interfaces often play a crucial role in the macroscopic dynamics of multip...
Results of the coarse-grained molecular dynamics simulations are used to show that the force balance...
The wetting of soft polymer substrates brings in multiple complexities when compared with the wettin...
The equilibrium shape of liquid drops on elastic substrates is determined by minimizing elastic and ...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
152 pagesThis dissertation presents part of my recent effort to understand complex surface mechanica...
The capillary forces exerted by liquid drops and bubbles on a soft solid are directly measured using...
\u3cp\u3eExtremely compliant elastic materials, such as thin membranes or soft gels, can be deformed...
The surface free energy, or surface tension, of a liquid interface gives rise to a pressure jump whe...
Surface stress and surface energy are fundamental quantities which characterize the interface betwee...
Surface stress and surface energy are physical quantities characterizing the interface between mater...
The dynamic properties of interfaces often play a crucial role in the macroscopic dynamics of multip...
Results of the coarse-grained molecular dynamics simulations are used to show that the force balance...
The wetting of soft polymer substrates brings in multiple complexities when compared with the wettin...
The equilibrium shape of liquid drops on elastic substrates is determined by minimizing elastic and ...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
Soft solids differ from stiff solids in an important way: their surface stresses can drive large def...
152 pagesThis dissertation presents part of my recent effort to understand complex surface mechanica...