Density functional techniques are used to derive a charging expression for the non-uniform density of a molecular liquid. In the atomic limit the equation reduces to an exact form due to Fixman. The theory is simplified greatly via a physical approximation that accounts for three-body correlations beyond those included in the hypernetted chain (HNC) closure of the Ornstein-Zernike (OZ) equation. The radial distribution function is obtained as a special case. The theory is tested by examining the phase behavior of two fundamental complex fluids: the homopolymer blend and diblock copolymer melts. For the former it is found, contrary to HNC theory and its molecular generalizations, that a critical temperature T c is predicted from the structur...
A Helmholtz free energydensity functional is developed to describe the vapor-liquid interface of ass...
We present results from constant pressure molecular-dynamics simulations for a bead-spring model of ...
In this paper we develop a theory for an excess electron in simple fluids. It is based upon the path...
We introduce a classical density functional (DFT) description of polymer solutions, initially focusi...
A density functional theory is proposed to investigate the effects of polymer monomer-monomer and mo...
We formulate a density-functional theory that is capable of describing simultaneously the solid, liq...
Fluids are defined as complex due to their size, shape, polydispersity, or specific intermolecular a...
Hyperbranched polymers show an outstanding potential for applications ranging from chemistry over na...
This work presents a theoretical study of the structure, thermodynamics, and phase behavior of block...
ABSTRACT The goal of this research has been to generalize Density Functional Theory (DFT) for comple...
Theoretical thermodynamic models that accurately capture liquid behavior do so at the cost of ease o...
The phase behavior of fluid mixtures is understood by the critical lines in fluid-gas diagrams. We i...
The Statistical Associating Fluid Theory (SAFT) equation of state is a statistical mechanics based e...
Molecular dynamics (MD) simulations were performed on dense liquids of polyethylene chains of 24 and...
Broadly defined as fluids possessing multiple length scales, complex fluids, typified by polymers, h...
A Helmholtz free energydensity functional is developed to describe the vapor-liquid interface of ass...
We present results from constant pressure molecular-dynamics simulations for a bead-spring model of ...
In this paper we develop a theory for an excess electron in simple fluids. It is based upon the path...
We introduce a classical density functional (DFT) description of polymer solutions, initially focusi...
A density functional theory is proposed to investigate the effects of polymer monomer-monomer and mo...
We formulate a density-functional theory that is capable of describing simultaneously the solid, liq...
Fluids are defined as complex due to their size, shape, polydispersity, or specific intermolecular a...
Hyperbranched polymers show an outstanding potential for applications ranging from chemistry over na...
This work presents a theoretical study of the structure, thermodynamics, and phase behavior of block...
ABSTRACT The goal of this research has been to generalize Density Functional Theory (DFT) for comple...
Theoretical thermodynamic models that accurately capture liquid behavior do so at the cost of ease o...
The phase behavior of fluid mixtures is understood by the critical lines in fluid-gas diagrams. We i...
The Statistical Associating Fluid Theory (SAFT) equation of state is a statistical mechanics based e...
Molecular dynamics (MD) simulations were performed on dense liquids of polyethylene chains of 24 and...
Broadly defined as fluids possessing multiple length scales, complex fluids, typified by polymers, h...
A Helmholtz free energydensity functional is developed to describe the vapor-liquid interface of ass...
We present results from constant pressure molecular-dynamics simulations for a bead-spring model of ...
In this paper we develop a theory for an excess electron in simple fluids. It is based upon the path...