Forcefields and molecular dynamics trajectories for "What makes a performant electrolyte for organic polymer batteries - A case study on PF6- and ClO4-
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ffs.zip: Contains forcefields for the three different F-pentamers, tetrabutylammonium (B4N.itp), hexafluorophosphate (PF6.itp), perchlorate (ClO.itp) and acetonitrile (ACN.itp). A monomeric unit of the F-pentamer consists of a terthiophene to which a 2,2,6,6-Tetramethylpiperidinyloxyl (TEMPO) is attached to via a formamide-linker. The first F-pentamer has a positiviely charged TEMPO moiety (FNO.itp), the second F-pentamer is not charged (FU.itp) and the last F-pentamer has a positively charge thiophene-backbone (FT.itp). SOC100_uncharged_PF6.zip: Contains gromacs[1] trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell containing 18 F-pentamers with charged TEMPO-moieties, 354 Bu4N+, 494 PF6- and 1853 acetonitrile molecules. SOC100_uncharged_ClO4.zip: Contains gromacs[1] trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell containing 18 F-pentamers with charged TEMPO-moieties, 354 Bu4N+, 494 ClO4- and 1853 acetonitrile molecules. SOC0_uncharged_PF6.zip: Contains gromacs trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell containing 28 uncharged F-pentamers, 354 Bu4N+, 354 PF6- and 2253 acetonitrile molecules. SOC0_uncharged_ClO4.zip: Contains gromacs trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell with the Bu4NClO4 electrolyte containing 28 uncharged F-pentamers, 354 Bu4N+, 354 ClO4- and 2253 acetonitrile molecules. SOC50_chargedNO_chargedThio_PF6.zip: Contains gromacs trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell containing 14 uncharged F-pentamers, 7 F-pentamers with charged TEMPO moieties, 7 F-pentamers with charged thiophene-backbone, 354 Bu4N+, 424 PF6- and 2048 acetonitrile molecules. SOC50_chargedNO_chargedThio_ClO4.zip: Contains gromacs trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell containing 14 uncharged F-pentamers, 7 F-pentamers with charged TEMPO moieties, 7 F-pentamers with charged thiophene-backbone, 354 Bu4N+, 424 ClO4- and 2048 acetonitrile molecules. SOC50_chargedNO_PF6.zip: Contains gromacs trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell containing 14 uncharged F-pentamers, 14 F-pentamers with charged TEMPO moieties, 354 Bu4N+, 424 PF6- and 1876 acetonitrile molecules. SOC50_chargedNO_ClO4.zip: Contains gromacs trajectories (every 10th frame of the original trajectories) and TPR-files for the three production runs of the simulation cell containing 14 uncharged F-pentamers, 14 F-pentamers with charged TEMPO moieties, 354 Bu4N+, 424 ClO4- and 1876 acetonitrile molecules. [1] M.J. Abraham, T. Murtola, R. Schulz, S. Páll, J.C. Smith, B. Hess, and E. Lindahl, “GROMACS: High performance molecular simulations through multi-level parallelism from laptops to supercomputers,” SoftwareX, 1–2 19–25 (2015)



