Multiple CO2 capture in pristine and Sr-decorated graphyne: A DFT-D3 and AIMD study

被引:24
作者
Darvishnejad, Mohammad Hossein [1 ]
Reisi-Vanani, Adel [1 ,2 ]
机构
[1] Univ Kashan, Fac Chem, Dept Phys Chem, Kashan, Iran
[2] Univ Kashan, Inst Nano Sci & Nano Technol, Kashan, Iran
关键词
Graphyne; 2-D carbon nanomaterial; Carbon nano-sheet; Decoration; CO2; capture; HYDROGEN STORAGE; GAMMA-GRAPHYNE; CARBON-DIOXIDE; ELECTRONIC-STRUCTURES; FUEL ELECTRODE; SURFACE-AREA; ADSORPTION; GRAPHDIYNE; EFFICIENT; GRAPHENE;
D O I
10.1016/j.commatsci.2020.109539
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Recent advances in two-dimensional carbon allotropes and their applications as efficient CO2 capture materials can decrease effect of CO2 on the global weather changes. In current study, influence of strontium on the structural and electronic properties of a new allotrope of carbon, graphyne (GY), toward promotion of CO2 capture capacity were investigated using DFT-D3 calculations. Various sites for Sr decoration in GY frame were probed. Then, we investigated the best site and direction for adsorption of CO2 on the structures. Results show that the best site is 1.740 angstrom above the center of the 12-membered ring with the adsorption energy of - 3.034 eV. It is very more than bulk cohesive energy of Sr (about - 1.72 eV/atom), therefore, aggregation of the Sr atoms is hindered on the GY sheet. Also, for pristine GY, 12-membered ring and for Sr-decorated GY, top of Sr atom are the best sites for CO2 trapping with adsorption energies of - 0.252 and - 0.425 eV, respectively. Thermal stability of the structures at room temperature was confirmed by Ab initio molecular dynamics (AIMD) simulation. Adding of CO2 molecules on the pristine and Sr-decorated GY shows that three and seven CO2 molecules can adsorb on one side of the GY sheet with the average adsorption energy of - 0.260 and - 0.478 eV/CO2, respectively. Therefore, CO2 capture capacity is estimated to be as high as 31.68 wtWo for the Sr-decorated GY. This study shows that Sr-decorated GY can be used as a hopeful candidate for the CO2 capture applications in the future.
引用
收藏
页数:12
相关论文
共 81 条
[1]   DFT study of the electronic and structural properties of single Al and N atoms and Al-N co-doped graphyne toward hydrogen storage [J].
Akbari, Fariba ;
Reisi-Vanani, Adel ;
Darvishnejad, Mohammad Hosein .
APPLIED SURFACE SCIENCE, 2019, 488 :600-610
[2]   Catalysis for the Valorization of Exhaust Carbon: from CO2 to Chemicals, Materials, and Fuels. Technological Use of CO2 [J].
Aresta, Michele ;
Dibenedetto, Angela ;
Angelini, Antonella .
CHEMICAL REVIEWS, 2014, 114 (03) :1709-1742
[3]   Sorption kinetics of eight gases on a carbon molecular sieve at elevated pressure [J].
Bae, YS ;
Lee, CH .
CARBON, 2005, 43 (01) :95-107
[4]   Recent advances and progress in the development of graphene-based adsorbents for CO2 capture [J].
Balasubramanian, Rajasekhar ;
Chowdhury, Shamik .
JOURNAL OF MATERIALS CHEMISTRY A, 2015, 3 (44) :21968-21989
[5]   STRUCTURE-PROPERTY PREDICTIONS FOR NEW PLANAR FORMS OF CARBON - LAYERED PHASES CONTAINING SP2 AND SP ATOMS [J].
BAUGHMAN, RH ;
ECKHARDT, H ;
KERTESZ, M .
JOURNAL OF CHEMICAL PHYSICS, 1987, 87 (11) :6687-6699
[6]   Vibrational and thermodynamic study of the adsorption of carbon dioxide on the zeolite Na-ZSM-5 [J].
Bonelli, B ;
Onida, B ;
Fubini, B ;
Areán, CO ;
Garrone, E .
LANGMUIR, 2000, 16 (11) :4976-4983
[7]   Boron-mediated activation of carbon dioxide [J].
Bontemps, Sebastien .
COORDINATION CHEMISTRY REVIEWS, 2016, 308 :117-130
[8]   Density-functional approaches to noncovalent interactions: A comparison of dispersion corrections (DFT-D), exchange-hole dipole moment (XDM) theory, and specialized functionals [J].
Burns, Lori A. ;
Vazquez-Mayagoitia, Alvaro ;
Sumpter, Bobby G. ;
Sherrill, C. David .
JOURNAL OF CHEMICAL PHYSICS, 2011, 134 (08)
[9]   Effect of the porous structure in carbon materials for CO2 capture at atmospheric and high-pressure [J].
Casco, Mirian E. ;
Martinez-Escandell, Manuel ;
Silvestre-Albero, Joaquin ;
Rodriguez-Reinoso, Francisco .
CARBON, 2014, 67 :230-235
[10]   Calcium-Based Functionalization of Carbon Materials for CO2 Capture: A First-Principles Computational Study [J].
Cazorla, C. ;
Shevlin, S. A. ;
Guo, Z. X. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2011, 115 (22) :10990-10995