Molecular dynamics simulations of EMI-BF4 in nanoporous carbon actuators

被引:0
|
作者
Endel Soolo
Daniel Brandell
Anti Liivat
Heiki Kasemägi
Tarmo Tamm
Alvo Aabloo
机构
[1] University of Tartu,IMS Lab, Institute of Technology
[2] Uppsala University,Department of Materials Chemistry
来源
关键词
Artificial muscle; 1-Ethyl-3-methyl-imidazolium tetraborofluorate; Carbide derived carbon; Molecular dynamics;
D O I
暂无
中图分类号
学科分类号
摘要
An artificial muscle composite material consisting of carbide derived carbon (CDC) and 1-ethyl-3-methylimidazolium tetrafluoroborate (EMI-BF4) ionic liquid was modeled using molecular dynamics (MD) simulations, in order to determine the molecular structural rearrangements causing actuation. CDC was represented as separate curved graphene-like flakes with charges of +2, 0 or −2 on each flake, with 24–27 aromatic rings each. The charge distribution in the flakes was determined by PM6 semi-empirical optimization. The pore size distribution of CDC and the density of the material were comparable to experimental data. Molecular structure analysis revealed a preferential parallel orientation for the cations over the negatively charged CDC surfaces, while cationic rotations and reorientations could be observed for positively charged CDC. Changes in the pore occupancy for each ionic type were observed for pore sizes between 4 and 7 Å, which, together with the replacement of large cations with smaller anions, could explain the volume decrease in the anodes (and, vice versa, the volume increase in the cathodes) in this type of actuator.
引用
收藏
页码:1541 / 1552
页数:11
相关论文
共 50 条
  • [31] Ion Rejection by Nanoporous Membranes in Pressure-Driven Molecular Dynamics Simulations
    Leung, Kevin
    Rempe, Susan B.
    JOURNAL OF COMPUTATIONAL AND THEORETICAL NANOSCIENCE, 2009, 6 (08) : 1948 - 1955
  • [32] Molecular dynamics simulations of atomically flat and nanoporous electrodes with a molten salt electrolyte
    Vatamanu, Jenel
    Borodin, Oleg
    Smith, Grant D.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2010, 12 (01) : 170 - 182
  • [33] Nanoporous carbon membranes for separation of nitrogen and oxygen: Insight from molecular simulations
    Arora, Gaurav
    Sandler, Stanley I.
    FLUID PHASE EQUILIBRIA, 2007, 259 (01) : 3 - 8
  • [34] Interaction of water with the model ionic liquid [bmim][BF4]:: Molecular dynamics simulations and comparison with NMR data
    Moreno, Margherita
    Castiglione, Franca
    Mele, Andrea
    Pasqui, Carlo
    Raos, Guido
    JOURNAL OF PHYSICAL CHEMISTRY B, 2008, 112 (26): : 7826 - 7836
  • [35] Heterogeneous dynamics in nanoporous materials examined by molecular dynamics simulations-effects of modification of caged ion dynamics
    Habasaki, Junko
    Ngai, K. L.
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2018, 498 : 364 - 371
  • [36] Nanoporous gold reinforced with carbon based nanomaterials: A molecular dynamics study
    Gulmez, Deniz Ezgi
    Yildiz, Yunus Onur
    Kirca, Mesut
    COMPOSITES PART B-ENGINEERING, 2018, 151 : 62 - 70
  • [37] Carbon nanotube caps as springs: Molecular dynamics simulations
    Yao, N
    Lordi, V
    PHYSICAL REVIEW B, 1998, 58 (19): : 12649 - 12651
  • [38] Molecular dynamics simulations of atomic carbon on tungsten surface
    Yang, Zhongshi
    Yang, Y. M.
    Lu, G-H.
    Luo, G-N.
    JOURNAL OF NUCLEAR MATERIALS, 2009, 390-91 : 136 - 139
  • [39] Molecular dynamics simulations of ion transport in carbon nanotubes
    Shuford, Kevin
    Samoylova, Olga
    Calixte, Emvia
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2015, 249
  • [40] Molecular dynamics simulations of the filling and decorating of carbon nanotubules
    Mao, ZG
    Garg, A
    Sinnott, SB
    NANOTECHNOLOGY, 1999, 10 (03) : 273 - 277