A combined molecular dynamics and experimental study of doped polypyrrole
β Scribed by John M. Fonner; Christine E. Schmidt; Pengyu Ren
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 761 KB
- Volume
- 51
- Category
- Article
- ISSN
- 0032-3861
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β¦ Synopsis
Polypyrrole (PPy) is a biocompatible, electrically conductive polymer that has great potential for battery, sensor, and neural implant applications. Its amorphous structure and insolubility, however, limit the experimental techniques available to study its structure and properties at the atomic level. Previous theoretical studies of PPy in bulk are also scarce. Using ab initio calculations, we have constructed a molecular mechanics force field of chloride-doped PPy (PPyCl) and undoped PPy. This model has been designed to integrate into the OPLS force field, and parameters are available for the Gromacs and TINKER software packages. Molecular dynamics (MD) simulations of bulk PPy and PPyCl have been performed using this force field, and the effects of chain packing and electrostatic scaling on the bulk polymer density have been investigated. The density of flotation of PPyCl films has been measured experimentally. Amorphous X-ray diffraction of PPyCl was obtained and correlated with atomic structures sampled from MD simulations. The force field reported here is foundational for bridging the gap between experimental measurements and theoretical calculations for PPy based materials.
π SIMILAR VOLUMES
We carried out NPT ensemble classical molecular dynamics simulation of water in solid, liquid and gaseous state. The simulations were performed for two density cases-normal (r ΒΌ 1 g/cm 3 ) and lowered density (r ΒΌ 0:25 g/cm 3 ), for several values of temperature. The calculated structural and dynami