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Hydrogen Adsorption on Ti Decorating Benzene Grafted Tetrahydrido-silsequioxanes

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【作者】 李晓东张红唐永建吴卫东王朝阳

【Author】 LI Xiao-Donga ZHANG Honga② TANG Yong-Jianb WU Wei-Dongb WANG Chao-Yangb a(College of Physical Science and Technology,Sichuan University,Chengdu 610065,China) b(Research Center of Laser Fusion,China Academy of Engineering Physics,Mianyang 621900,China)

【机构】 College of Physical Science and Technology,Sichuan UniversityResearch Center of Laser Fusion,China Academy of Engineering Physics

【摘要】 A novel type of Ti decorating benzene grafted tetrahydrido-silsequioxane struc-tures was designed and investigated using density functional theory(DFT).The hydrogen adsorption properties of this new material were investigated at the same level of theory.The results reveal that up to four hydrogen molecules(with the restrict of 18 electrons rule) can be adsorbed on each Ti atom of(TiC6H5)m-H4-mSi4O6(m = 1-4) molecular systems with the average binding energies of 0.691,0.692,0.693 and 0.695 eV for m = 1-4,respectively.The variations of HOMO- LUMO energy gaps verify that the host structures with four H2 molecules adsorbed own the best kinetics stability.The interaction mechanism of H2 molecules with the host materials mainly attributes to the well-known "kubas interactions".All the results indicate that the complex structures designed here may be used as hydrogen storage materials at ambient conditions.

【Abstract】 A novel type of Ti decorating benzene grafted tetrahydrido-silsequioxane struc-tures was designed and investigated using density functional theory(DFT).The hydrogen adsorption properties of this new material were investigated at the same level of theory.The results reveal that up to four hydrogen molecules(with the restrict of 18 electrons rule) can be adsorbed on each Ti atom of(TiC6H5)m-H4-mSi4O6(m = 1-4) molecular systems with the average binding energies of 0.691,0.692,0.693 and 0.695 eV for m = 1-4,respectively.The variations of HOMO- LUMO energy gaps verify that the host structures with four H2 molecules adsorbed own the best kinetics stability.The interaction mechanism of H2 molecules with the host materials mainly attributes to the well-known "kubas interactions".All the results indicate that the complex structures designed here may be used as hydrogen storage materials at ambient conditions.

【基金】 Supported by the National Natural Science Foundation of China (NSFC Grant No.11074176 and NSAF Grant No.10976019);Doctoral Program of Higher Education of China (No.20100181110080)
  • 【文献出处】 结构化学 ,Chinese Journal of Structural Chemistry , 编辑部邮箱 ,2012年04期
  • 【分类号】O647.3
  • 【下载频次】33
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