Advances in Clayff Molecular Simulation of Layered and Nanoporous Materials and Their Aqueous Interfaces

被引:179
作者
Cygan, Randall T. [1 ]
Greathouse, Jeffery A. [1 ]
Kalinichev, Andrey G. [2 ]
机构
[1] Sandia Natl Labs, Dept Geochem, Albuquerque, NM 87185 USA
[2] Univ Nantes, CNRS IN2P3, Inst Mines Telecom Atlantique, Lab SUBATECH UMR 6457, F-44307 Nantes, France
关键词
URANYL(VI) ADSORPTION EQUILIBRIA; POLARIZABLE FORCE-FIELD; X-RAY-DIFFRACTION; DYNAMICS SIMULATION; MONTMORILLONITE CLAY; CARBON-DIOXIDE; MONTE-CARLO; THERMOMECHANICAL PROPERTIES; COMPUTER-SIMULATIONS; NANOCONFINED WATER;
D O I
10.1021/acs.jpcc.1c04600
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
As a general-purpose force field for molecular simulations of layered materials and their fluid interfaces, Clayff continues to see broad usage in atomistic computational modeling for numerous geoscience and materials science applications due to its (1) success in predicting properties of bulk nanoporous materials and their interfaces, (2) transferability to a range of layered and nanoporous materials, and (3) simple functional form which facilitates incorporation into a variety of simulation codes. Here, we review applications of Clayff to model bulk phases and interfaces not included in the original parameter set and recent modifications for modeling surface terminations such as hydroxylated nanoparticle edges. We conclude with a discussion of expectations for future developments.
引用
收藏
页码:17573 / 17589
页数:17
相关论文
共 197 条
  • [1] Role of Mono- and Divalent Surface Cations on the Structure and Adsorption Behavior of Water on Mica Surface
    Adapa, Sai
    Swamy, Dhananjay R.
    Kancharla, Samhitha
    Pradhan, Swastik
    Malani, Ateeque
    [J]. LANGMUIR, 2018, 34 (48) : 14472 - 14488
  • [2] Nano-engineering of the mechanical properties of tobermorite 14 Å with graphene via molecular dynamics simulations
    Al-Muhit, B.
    Sanchez, F.
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2020, 233
  • [3] Allen M. P., 2017, COMPUTER SIMULATION, V2nd, P626
  • [4] Protein-Mineral Interactions: Molecular Dynamics Simulations Capture Importance of Variations in Mineral Surface Composition and Structure
    Andersen, Amity
    Reardon, Patrick N.
    Chacon, Stephany S.
    Qafoku, Nikolla P.
    Washton, Nancy M.
    Kleber, Markus
    [J]. LANGMUIR, 2016, 32 (24) : 6194 - 6209
  • [5] Clay swelling - A challenge in the oilfield
    Anderson, R. L.
    Ratcliffe, I.
    Greenwell, H. C.
    Williams, P. A.
    Cliffe, S.
    Coveney, P. V.
    [J]. EARTH-SCIENCE REVIEWS, 2010, 98 (3-4) : 201 - 216
  • [6] Molecular dynamics simulation of the interaction of uranium (VI) with the C-S-H phase of cement in the presence of gluconate
    Androniuk, Iuliia
    Kalinichev, Andrey G.
    [J]. APPLIED GEOCHEMISTRY, 2020, 113 (113)
  • [7] QUANTUM-CHEMICAL MODELING OF SMECTITE CLAYS
    ARONOWITZ, S
    COYNE, L
    LAWLESS, J
    RISHPON, J
    [J]. INORGANIC CHEMISTRY, 1982, 21 (10) : 3589 - 3593
  • [8] A 29Si MAS NMR study of modified C-S-H nanostructures
    Beaudoin, James J.
    Raki, Laila
    Alizadeh, Rouhollah
    [J]. CEMENT & CONCRETE COMPOSITES, 2009, 31 (08) : 585 - 590
  • [9] Phase diagram of kaolinite from Molecular Dynamics calculations
    Benazzouz, B. K.
    Zaoui, A.
    [J]. PHYSICA B-CONDENSED MATTER, 2012, 407 (13) : 2462 - 2470
  • [10] Berendsen H.J., 1981, INTERMOLECULAR FORCE, P331, DOI DOI 10.1007/978-94-015-7658-1_21