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Hydrogen storage in BC_3 composite single-walled nanotube:a combined density functional theory and Monte Carlo investigation 被引量:1

Hydrogen storage in BC_3 composite single-walled nanotube:a combined density functional theory and Monte Carlo investigation
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摘要 This paper applies a density functional theory (DFT) and grand canonical Monte Carlo simulations (GCMC) to investigate the physisorptions of molecular hydrogen in single-walled BC3 nanotubes and carbon nanotubes. The DFT calculations may provide useful information about the nature of hydrogen adsorption and physisorption energies in selected adsorption sites of these two nanotubes. Furthermore, the GCMC simulations can reproduce their storage capacity by calculating the weight percentage of the adsorbed molecular hydrogen under different conditions. The present results have shown that with both computational methods, the hydrogen storage capacity of BC3 nanotubes is superior to that of carbon nanotubes. The reasons causing different behaviour of hydrogen storage in these two nanotubes are explained by using their contour plots of electron density and charge-density difference. This paper applies a density functional theory (DFT) and grand canonical Monte Carlo simulations (GCMC) to investigate the physisorptions of molecular hydrogen in single-walled BC3 nanotubes and carbon nanotubes. The DFT calculations may provide useful information about the nature of hydrogen adsorption and physisorption energies in selected adsorption sites of these two nanotubes. Furthermore, the GCMC simulations can reproduce their storage capacity by calculating the weight percentage of the adsorbed molecular hydrogen under different conditions. The present results have shown that with both computational methods, the hydrogen storage capacity of BC3 nanotubes is superior to that of carbon nanotubes. The reasons causing different behaviour of hydrogen storage in these two nanotubes are explained by using their contour plots of electron density and charge-density difference.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第3期394-401,共8页 中国物理B(英文版)
基金 Project supported by Henan University of Technology Foundation (Grant No. 2009BS025) China Academy of Engineering Physics Foundation (Grant No. 2007B08008)
关键词 BC3 composite nanotube hydrogen storage density functional theory (DFT) grandcanonical Monte Carlo method (GCMC) BC3 composite nanotube, hydrogen storage, density functional theory (DFT), grandcanonical Monte Carlo method (GCMC)
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  • 1Dillon A C and Heben M J 2001 Appl. Phys. A 72 133.
  • 2Ding R G, Lu G Q, Yan Z F and Wilson M A 2001 J. Nanosci. Nanotechnol. 1 7.
  • 3Meregalli V and Parrinello M 2001 Appl. Phys. A 72 143.
  • 4Hirscher M and Becher M 2003 J. Nanosci. Nanotechnol. 3 3.
  • 5Liu C and Cheng H M 2005 J. Phys. D 38 R231.
  • 6Chen D, Yu B H, Wang C L and Gao T 2007 Chin. Phys. 16 2056.
  • 7Liu X Y, Wang C Y, Tang Y J, Sun W G, Wu W D, Zhang H Q, Liu M, Yuan L and Xu J J 2009 Acta Phys. Sin. 58 1126.
  • 8Zuttel A 2003 Mater. Today 9 24.
  • 9Orimo S, Ziittel A, Schlapbach L, Majer G, Fukunaga T and Fujii H 2003 J. Appl. Crystallogr. 356 716.
  • 10Li J, Furuta T, Goto H, Ohashi T, Fujiwara Y and Yip S 2003 J. Chem. Phys. 119 2376.

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