Density functional theory study of graphite oxide for different oxidation levels

被引:234
作者
Lahaye, R. J. W. E. [1 ]
Jeong, H. K. [1 ]
Park, C. Y. [1 ]
Lee, Y. H. [1 ]
机构
[1] Sungkyunkwan Univ, Univ Coll, Dept Phys, Dept Energy Sci,Ctr Nanotubes & Nanostructured Co, Suwon 440746, South Korea
关键词
ab initio calculations; bonds (chemical); density functional theory; elemental semiconductors; graphite; insulating materials; oxidation; GENERALIZED GRADIENT APPROXIMATION; TOTAL-ENERGY CALCULATIONS; OXYGEN-ADSORPTION; GRAPHENE; DYNAMICS; ROUTE; C-13; GAS;
D O I
10.1103/PhysRevB.79.125435
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Graphite oxide constitutes a hexagonal carbon network with oxygen atoms in carbon-oxide ether ring formations and hydroxyl molecules. We have studied graphite oxide with a first-principles density functional theory calculation for different oxidation levels. The oxygen atoms form 1,2-ether groups (epoxides) on the carbon grid, with on the adjacent carbon atoms, but at the opposite side of the carbon plane, the hydroxyl molecules. Graphite oxide cannot have 1,3-ether oxygens because of the higher formation energy. The transverse wrinkling of the carbon grid is about 0.5 A, mostly due to the deformation around the hydroxyl bonds, yet the in-plane lattice axes retain the hexagonal features of graphene. A stable graphite oxide structure requires hydroxyl molecules to relax the tension on the carbon grid from the 1,2-ether oxygens. At a low degree of oxidation, graphite oxide is a semiconductor, but when the oxidation is saturated, it turns into an insulator.
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页数:8
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共 39 条
[11]   Solid-state NMR studies of the structure of graphite oxide [J].
He, HY ;
Riedl, T ;
Lerf, A ;
Klinowski, J .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (51) :19954-19958
[12]   The acidic nature and the methylation of graphitoxide. [J].
Hofmann, U ;
Holst, R .
BERICHTE DER DEUTSCHEN CHEMISCHEN GESELLSCHAFT, 1939, 72 :754-771
[13]   Mechanical properties of graphite oxides:: Ab initio simulations and continuum theory -: art. no. 212103 [J].
Incze, A ;
Pasturel, A ;
Peyla, P .
PHYSICAL REVIEW B, 2004, 70 (21) :1-4
[14]   Evidence of graphitic AB stacking order of graphite oxides [J].
Jeong, Hae-Kyung ;
Lee, Yun Pyo ;
Lahaye, Rob J. W. E. ;
Park, Min-Ho ;
An, Kay Hyeok ;
Kim, Ick Jun ;
Yang, Cheol-Woong ;
Park, Chong Yun ;
Ruoff, Rodney S. ;
Lee, Young Hee .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2008, 130 (04) :1362-1366
[15]   Tunable Electrical Conductivity of Individual Graphene Oxide Sheets Reduced at "Low" Temperatures [J].
Jung, Inhwa ;
Dikin, Dmitriy A. ;
Piner, Richard D. ;
Ruoff, Rodney S. .
NANO LETTERS, 2008, 8 (12) :4283-4287
[16]   Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set [J].
Kresse, G ;
Furthmuller, J .
PHYSICAL REVIEW B, 1996, 54 (16) :11169-11186
[17]   From ultrasoft pseudopotentials to the projector augmented-wave method [J].
Kresse, G ;
Joubert, D .
PHYSICAL REVIEW B, 1999, 59 (03) :1758-1775
[18]   Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set [J].
Kresse, G ;
Furthmuller, J .
COMPUTATIONAL MATERIALS SCIENCE, 1996, 6 (01) :15-50
[19]   Hydration behavior and dynamics of water molecules in graphite oxide [J].
Lerf, A. ;
Buchsteiner, A. ;
Pieper, J. ;
Schottl, S. ;
Dekany, I. ;
Szabo, T. ;
Boehm, H. P. .
JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2006, 67 (5-6) :1106-1110
[20]   13C and 1H MAS NMR studies of graphite oxide and its chemically modified derivatives [J].
Lerf, A ;
He, HY ;
Riedl, T ;
Forster, M ;
Klinowski, J .
SOLID STATE IONICS, 1997, 101 :857-862