| Title | Density functional theory for pair correlation functions in polymeric liquids |
| Publication Type | Journal Article |
| Year of Publication | 2001 |
| Authors | Yethiraj, A, Fynewever, H, Shew, CY |
| Journal | Journal of Chemical PhysicsJournal of Chemical Physics |
| Volume | 114 |
| Pagination | 4323-4330 |
| Date Published | Mar |
| Type of Article | Article |
| ISBN Number | 0021-9606 |
| Accession Number | ISI:000167044400053 |
| Keywords | CLASSICAL FLUIDS, CONFORMATIONAL PROPERTIES, directional attractive forces, equations, GREEN-YVON EQUATION, HARD-SPHERE CHAINS, integral-equation theory, MICROSCOPIC, MOLECULAR LIQUIDS, monte-carlo, polyelectrolyte, simulations, Solutions |
| Abstract | A density functional theory is presented for the pair correlation functions in polymeric liquids. The theory uses the Yethiraj-Woodward free-energy functional for the polymeric liquid, where the ideal gas free-energy functional is treated exactly and the excess free-energy functional is obtained using a weighted density approximation with the simplest choice of the weighting function. Pair correlation functions are obtained using the Percus trick, where the external field is taken to be a single polymer molecule. The minimization of the free energy in the theory requires a two molecule simulation at each iteration. The theory is very accurate for the pair correlation functions in freely jointed tangent-hard-sphere chains and freely rotating fused-hard-sphere chains, especially at low densities and for long chains. In addition, the theory allows the calculation of the virial pressure in these systems and shows a remarkable degree of consistency between the virial and compressibility pressure. (C) 2001 American Institute of Physics. |
| Short Title | Density functional theory for pair correlation functions in polymeric liquidsJ. Chem. Phys.J. Chem. Phys. |
| Alternate Journal | J. Chem. Phys. |