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Improved H-2 uptake capacity of transition metal doped benzene by boron substitution

机译:改善过渡金属掺杂苯的H-2摄取能力通过硼替代

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The effect of boron substitution on hydrogen storage capacity of transition metal (TM) doped benzene is studied using density functional theory and the second order Moller-Plesset method with aug-cc-pVDZ basis set. Out of the six carbon atoms in a benzene ring, two are substituted by boron atoms. The structures considered here are C4B2H6TM (TM = Sc, Ti, V). Four, four and three H-2 molecules can be adsorbed on unsubstituted C6H6Sc, C6H6Ti and C6H6V complexes, respectively, whereas upon boron substitution one additional H-2 molecule gets adsorbed on each of these complexes. The H-2 uptake capacity of C4B2H6Sc, C4B2H6Ti and C4B2H6V obtained is 7.71, 7.54 and 5.99 wt%, respectively. Gibbs free energy corrected adsorption energies show that H-2 adsorption on C4B2H6Sc is energetically unfavorable whereas it is favorable on C4B2H6Ti and C4B2H6V at ambient conditions. Various interaction energies for the H-2 adsorbed complexes are obtained using a many-body analysis technique. The H-2 desorption temperature for boron substituted TM doped benzene is lower than that for TM doped benzene for all the three systems. Molecular dynamics simulations show that loosely bonded H-2 molecules in C4B2H6Sc(5H(2)) and C4B2H6Ti(5H(2)) complexes fly away during the simulation, thereby showing lower H-2 uptake capacity of these complexes than that obtained by electronic structure calculations.
机译:使用密度泛函理论研究了硼替代对过渡金属(TM)掺杂苯的储氢容量的影响,使用了8月CC-PVDZ基础组。在苯环中的六个碳原子中出来,两者被硼原子取代。这里考虑的结构是C4b2h6tm(tm = sc,ti,v)。四,四和三个H-2分子可以分别吸附在未取代的C6H6SC,C6H6TI和C6H6V复合物上,而在硼取代时,将另外的H-2分子吸附在这些复合物中的每一个上。 C4B2H6SC,C4B2H6TI和C4B2H6V的H-2摄取容量分别为7.71,7.54和5.99wt%。 Gibbs自由能量校正吸附能量表明,在C4B2H6SC上吸附在C4B2H6SC上具有能量不利,而在环境条件下有利于C4B2H6TI和C4B2H6V。使用许多体分析技术获得H-2吸附复合物的各种相互作用能量。硼取代的TM掺杂苯的H-2解吸温度低于所有三种系统的TM掺杂苯的下苯。分子动力学模拟表明,松散结合H-2分子在C4B2H6Sc(5H(2))和C4B2H6Ti(5H(2))的复合物在模拟期间飞走,从而示出这些配合比通过电子获得的较低的H 2吸收容量结构计算。

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  • 来源
    《RSC Advances》 |2016年第52期|共10页
  • 作者单位

    Acad Sinica Taiwan Int Grad Program Mol Sci &

    Technol Program Inst Atom &

    Mol Sci Taipei 11529 Taiwan;

    SRTM Univ Sch Phys Sci Nanded 431606 India;

    Shri Guru Gobind Singhji Inst Engn &

    Technol Nanded 431606 India;

    Inst Sci Dept Phys Bombay 400032 Maharashtra India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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