Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study

Transplatin complexes with N-or S-containing ligands were modeled in silico. We performed density functional theory calculations using the B3LYP exchange-correlation functional as incorporated in the Gaussian03 software package. The 6-311+G(d,p) basis set was used for first-row elements, and the Lan...

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Main Authors: Manalastas, William W., Dy, Eben S., Quevada, Nikko P., Kasai, Hideaki
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Published: Animo Repository 2009
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/3797
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4799/type/native/viewcontent/064210.html
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-47992021-10-12T08:50:56Z Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study Manalastas, William W. Dy, Eben S. Quevada, Nikko P. Kasai, Hideaki Transplatin complexes with N-or S-containing ligands were modeled in silico. We performed density functional theory calculations using the B3LYP exchange-correlation functional as incorporated in the Gaussian03 software package. The 6-311+G(d,p) basis set was used for first-row elements, and the LanL2DZ with effective core potential (ECP) basis set was used for platinum. The various neutral N-or S-containing ligands do not give rise to considerable variations in the trans-bond lengths and strengths. The reactions leading to complex formation also yield close net energy values. Nevertheless, Pt complexes with anionic thiolate (CH3S-) ligand are significantly more energetically stable by at least ∼5eV (∼115kcalmol-1 or ∼484kJmol-1) compared to transplatin complexes with other ligands. An examination of the net energetic stabilities and dipole moments of transplatin complexes with N-and S-ligands led us to hypothesize adenine to be the most suitable candidate among naturally occurring organic ligands (X) for the development of trans-Pt(NR)(NR′)Cl(X) anticancer agent. © 2009 IOP Publishing Ltd. 2009-04-08T07:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/3797 info:doi/10.1088/0953-8984/21/6/064210 https://animorepository.dlsu.edu.ph/context/faculty_research/article/4799/type/native/viewcontent/064210.html Faculty Research Work Animo Repository Platinum compounds Platinum Chlorine compounds Dyes and dyeing Sulfur Density functionals Chemistry
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Platinum compounds
Platinum
Chlorine compounds
Dyes and dyeing
Sulfur
Density functionals
Chemistry
spellingShingle Platinum compounds
Platinum
Chlorine compounds
Dyes and dyeing
Sulfur
Density functionals
Chemistry
Manalastas, William W.
Dy, Eben S.
Quevada, Nikko P.
Kasai, Hideaki
Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study
description Transplatin complexes with N-or S-containing ligands were modeled in silico. We performed density functional theory calculations using the B3LYP exchange-correlation functional as incorporated in the Gaussian03 software package. The 6-311+G(d,p) basis set was used for first-row elements, and the LanL2DZ with effective core potential (ECP) basis set was used for platinum. The various neutral N-or S-containing ligands do not give rise to considerable variations in the trans-bond lengths and strengths. The reactions leading to complex formation also yield close net energy values. Nevertheless, Pt complexes with anionic thiolate (CH3S-) ligand are significantly more energetically stable by at least ∼5eV (∼115kcalmol-1 or ∼484kJmol-1) compared to transplatin complexes with other ligands. An examination of the net energetic stabilities and dipole moments of transplatin complexes with N-and S-ligands led us to hypothesize adenine to be the most suitable candidate among naturally occurring organic ligands (X) for the development of trans-Pt(NR)(NR′)Cl(X) anticancer agent. © 2009 IOP Publishing Ltd.
format text
author Manalastas, William W.
Dy, Eben S.
Quevada, Nikko P.
Kasai, Hideaki
author_facet Manalastas, William W.
Dy, Eben S.
Quevada, Nikko P.
Kasai, Hideaki
author_sort Manalastas, William W.
title Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study
title_short Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study
title_full Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study
title_fullStr Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study
title_full_unstemmed Trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: A density functional theory study
title_sort trans-influence of nitrogen-and sulfur-containing ligands in trans-platinum complexes: a density functional theory study
publisher Animo Repository
publishDate 2009
url https://animorepository.dlsu.edu.ph/faculty_research/3797
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4799/type/native/viewcontent/064210.html
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