Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study
Pristine CNTs are exemplary hydrophobic solutes; properly functionalized CNTs can be seen as hydrophilic ones. The solubility of aminotriethylene glycol (ATG) functionalized single walled carbon nanotubes (fSWCNTs) were examined using density functional based tight binding method. According to the d...
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oai:animorepository.dlsu.edu.ph:faculty_research-24192021-06-28T01:37:20Z Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study Mananghaya, Michael R. Santos, Gil Nonato C. Yu, Dennis Pristine CNTs are exemplary hydrophobic solutes; properly functionalized CNTs can be seen as hydrophilic ones. The solubility of aminotriethylene glycol (ATG) functionalized single walled carbon nanotubes (fSWCNTs) were examined using density functional based tight binding method. According to the dynamics study, the ATG-fSWCNTs interaction energies (IE) and diffusion coefficients (D) are diameter dependent. As the diameter of the (n,0) tube is incrementally increased, a distinguishable pattern is observed, specifically the IE of the ATG-fSWCNT in water is quite higher for n that is an integral multiple of three (n = 9,12,15) while the D is lower due to its π bonding structures. In general, the metallic ATG functionalized nanotube possess a higher IE and a much lower D in aqueous media. © 2019 Wiley Periodicals, Inc. © 2019 Wiley Periodicals, Inc. 2019-03-30T07:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/1420 Faculty Research Work Animo Repository Carbon nanotubes Ethylene glycol—Solubility Density functionals |
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Carbon nanotubes Ethylene glycol—Solubility Density functionals Mananghaya, Michael R. Santos, Gil Nonato C. Yu, Dennis Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study |
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Pristine CNTs are exemplary hydrophobic solutes; properly functionalized CNTs can be seen as hydrophilic ones. The solubility of aminotriethylene glycol (ATG) functionalized single walled carbon nanotubes (fSWCNTs) were examined using density functional based tight binding method. According to the dynamics study, the ATG-fSWCNTs interaction energies (IE) and diffusion coefficients (D) are diameter dependent. As the diameter of the (n,0) tube is incrementally increased, a distinguishable pattern is observed, specifically the IE of the ATG-fSWCNT in water is quite higher for n that is an integral multiple of three (n = 9,12,15) while the D is lower due to its π bonding structures. In general, the metallic ATG functionalized nanotube possess a higher IE and a much lower D in aqueous media. © 2019 Wiley Periodicals, Inc. © 2019 Wiley Periodicals, Inc. |
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text |
author |
Mananghaya, Michael R. Santos, Gil Nonato C. Yu, Dennis |
author_facet |
Mananghaya, Michael R. Santos, Gil Nonato C. Yu, Dennis |
author_sort |
Mananghaya, Michael R. |
title |
Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study |
title_short |
Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study |
title_full |
Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study |
title_fullStr |
Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study |
title_full_unstemmed |
Solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: A density functional based tight binding molecular dynamics study |
title_sort |
solubility of aminotriethylene glycol functionalized single wall carbon nanotubes: a density functional based tight binding molecular dynamics study |
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Animo Repository |
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2019 |
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https://animorepository.dlsu.edu.ph/faculty_research/1420 |
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