Ab Initio Determination of Edge Surface Structures for Dioctahedral 2:1 Phyllosilicates: Implications for Acid-Base Reactivity

被引:0
作者
Barry R. Bickmore
Kevin M. Rosso
Kathryn L. Nagy
Randall T. Cygan
Christopher J. Tadanier
机构
[1] Brigham Young University,Department of Geology
[2] Pacific Northwest National Laboratory,Environmental Molecular Sciences Laboratory
[3] University of Illinois at Chicago,Department of Earth and Environmental Sciences
[4] Sandia National Laboratories,Geochemistry Department
[5] Virginia Tech,Department of Geological Sciences and Charles E. Via Department of Civil and Environmental Engineering
来源
Clays and Clay Minerals | 2003年 / 51卷
关键词
Clay Edge Surfaces; Density Functional Theory; Dissolution Kinetics; MUSIC; Pyrophyllite; Surface Structure;
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学科分类号
摘要
The atomic structure of dioctahedral 2:1 phyllosilicate edge surfaces was calculated using pseudopotential planewave density functional theory. Bulk structures of pyrophyllite and ferripyrophyllite were optimized using periodic boundary conditions, after which crystal chemical methods were used to obtain initial terminations for ideal (110)- and (010)-type edge surfaces. The edge surfaces were protonated using various schemes to neutralize the surface charge, and total minimized energies were compared to identify which schemes are the most energetically favorable. The calculations show that significant surface relaxation should occur on the (110)-type faces, as well as in response to different protonation schemes on both surface types. This result is consistent with atomic force microscopy observations of phyllosilicate dissolution behavior. Bond-valence methods incorporating bond lengths from calculated structures can be used to predict intrinsic acidity constants for surface functional groups on (110)- and (010)-type edge surfaces. However, the occurrence of surface relaxation poses problems for applying current bond-valence methods. An alternative method is proposed that considers bond relaxation, and accounts for the energetics of various protonation schemes on phyllosilicate edges.
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页码:359 / 371
页数:12
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  • [21] Bridgeman CH(1994)Acid hydrolysis of octahedral Mg Clays and Clay Minerals 42 717-723
  • [22] Buckingham AD(1998) sites in 2:1 layered silicates: an assessment of edge attack and gallery access mechanisms Environmental Science and Technology 32 2829-2838
  • [23] Skipper NT(1996)On the acid-base chemistry of permanently charged minerals Physical Review B: Condensed Matter 54 11169-11186
  • [24] Payne MC(1981)Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set American Mineralogist 66 350-357
  • [25] Brown ID(1966)Single crystal X-ray refinement of pyrophyllite-1 Tc Journal of Soil Science 17 212-247
  • [26] Altermatt D(1992)The mechanism of phosphate adsorption by kaolinite, gibbsite, and pseudoboehmite Reviews of Modern Physics 64 1045-1097
  • [27] Chang F-RC(1992)Iterative minimization techniques for ab initio total-energy calculations: Molecular dynamics and conjugate gradients Physical Review B: Condensed Matter 45 13244-13249
  • [28] Sposito G(2001)Accurate and simple analytic representation of the electron-gas correlation-energy Clays and Clay Minerals 49 500-513
  • [29] Chang F-RC(1999)The Cs/K exchange in muscovite interlayers: An ab initio treatment Science 285 874-876
  • [30] Sposito G(2002)Quantitative assessment of reactive surface area of phlogopite dissolution during acid dissolution Environmental Science and Technology 36 445-452