Hydrogenation of Substituted Fullerenes – a DFT Study

Hydrogen storage by carbon materials is a topic of current interest. In order to exploit fullerenes as one of the new forms of carbon for hydrogen storage, it is shown that an activator for hydrogen is necessary in the fullerene network. Even though one can generate stoichiometric hydrides the forma...

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Main Authors: K. Muthukumar, M. Sankaran, B. Viswanathan
Format: Article
Language:English
Published: al-Farabi Kazakh National University 2004-06-01
Series:Eurasian Chemico-Technological Journal 
Online Access:http://ect-journal.kz/index.php/ectj/article/view/589
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spelling doaj-42a2fe756312429fbc0b35a071631f242020-11-24T22:19:37Zengal-Farabi Kazakh National UniversityEurasian Chemico-Technological Journal 1562-39202522-48672004-06-016213914310.18321/ectj603589Hydrogenation of Substituted Fullerenes – a DFT StudyK. Muthukumar0M. Sankaran1B. Viswanathan2Department of chemistry, Indian Institute of Technology Madras, Chennai - 600 036, IndiaDepartment of chemistry, Indian Institute of Technology Madras, Chennai - 600 036, IndiaDepartment of chemistry, Indian Institute of Technology Madras, Chennai - 600 036, IndiaHydrogen storage by carbon materials is a topic of current interest. In order to exploit fullerenes as one of the new forms of carbon for hydrogen storage, it is shown that an activator for hydrogen is necessary in the fullerene network. Even though one can generate stoichiometric hydrides the formation of such hydrides have to be established. In this present study we have examined what type of species on carbon surfaces may be able to activate hydrogen molecule and lead to hydride formation. The Density Functional Theory calculations have been carried out on some typical model systems wherein the fullerene molecule is substituted in the network with heteroatoms like N, P and S and the reduction in the dissociation energy of hydrogen molecule is considered as a measure of the ability to hydride the carbon materials. On the basis of the reduction in the dissociation energy for the hydrogen molecule it was shown that heteroatom substitution in the fullerene net work may be suitable for the activation and dissociation of hydrogen molecule.http://ect-journal.kz/index.php/ectj/article/view/589
collection DOAJ
language English
format Article
sources DOAJ
author K. Muthukumar
M. Sankaran
B. Viswanathan
spellingShingle K. Muthukumar
M. Sankaran
B. Viswanathan
Hydrogenation of Substituted Fullerenes – a DFT Study
Eurasian Chemico-Technological Journal 
author_facet K. Muthukumar
M. Sankaran
B. Viswanathan
author_sort K. Muthukumar
title Hydrogenation of Substituted Fullerenes – a DFT Study
title_short Hydrogenation of Substituted Fullerenes – a DFT Study
title_full Hydrogenation of Substituted Fullerenes – a DFT Study
title_fullStr Hydrogenation of Substituted Fullerenes – a DFT Study
title_full_unstemmed Hydrogenation of Substituted Fullerenes – a DFT Study
title_sort hydrogenation of substituted fullerenes – a dft study
publisher al-Farabi Kazakh National University
series Eurasian Chemico-Technological Journal 
issn 1562-3920
2522-4867
publishDate 2004-06-01
description Hydrogen storage by carbon materials is a topic of current interest. In order to exploit fullerenes as one of the new forms of carbon for hydrogen storage, it is shown that an activator for hydrogen is necessary in the fullerene network. Even though one can generate stoichiometric hydrides the formation of such hydrides have to be established. In this present study we have examined what type of species on carbon surfaces may be able to activate hydrogen molecule and lead to hydride formation. The Density Functional Theory calculations have been carried out on some typical model systems wherein the fullerene molecule is substituted in the network with heteroatoms like N, P and S and the reduction in the dissociation energy of hydrogen molecule is considered as a measure of the ability to hydride the carbon materials. On the basis of the reduction in the dissociation energy for the hydrogen molecule it was shown that heteroatom substitution in the fullerene net work may be suitable for the activation and dissociation of hydrogen molecule.
url http://ect-journal.kz/index.php/ectj/article/view/589
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AT msankaran hydrogenationofsubstitutedfullerenesadftstudy
AT bviswanathan hydrogenationofsubstitutedfullerenesadftstudy
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