A Comparative DFT Study for Ruthenium

Here, a comparative DFT study of a transition metal complex, (pentamethylcyclopentadienyl) (diisopropylmethylphosphine) (chloro) (trichlorosilyl) rutheniumhydride, is reported. The molecule contains a Ruthenium (Ru) atom, which is hard to be handled computationally, just like other transition metals...

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Main Author: Nil ERTEKİN BİNBAY
Format: Article
Language:English
Published: Turkish Chemical Society 2020-06-01
Series:Journal of the Turkish Chemical Society, Section A: Chemistry
Subjects:
Online Access:https://dergipark.org.tr/tr/pub/jotcsa/issue/52506/568062
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author Nil ERTEKİN BİNBAY
author_facet Nil ERTEKİN BİNBAY
author_sort Nil ERTEKİN BİNBAY
collection DOAJ
description Here, a comparative DFT study of a transition metal complex, (pentamethylcyclopentadienyl) (diisopropylmethylphosphine) (chloro) (trichlorosilyl) rutheniumhydride, is reported. The molecule contains a Ruthenium (Ru) atom, which is hard to be handled computationally, just like other transition metals. Every calculation had started from the same point in state space (exact same atomic configurations of the molecule), and used the same computational resources (same software and hardware with same parameters), but five different basis sets; those are, Sapporo Non Relativistic SPK DZP, SBKJ, 3-21G, STO3G and STO6G. Molecule have been optimised for five times with these basis sets. Results have been compared to X-RAY data of the molecule to reveal the performances of these five approximation methods about handling a molecule that contains a transition metal like Ruthenium. It has been found that, unexpectedly, a computationally cheaper method has won the competition and has shown best performance among the others.
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spelling doaj.art-d27f9b77977d45c3841d713ab091fa592023-02-15T16:21:45ZengTurkish Chemical SocietyJournal of the Turkish Chemical Society, Section A: Chemistry2149-01202020-06-017235136010.18596/jotcsa.568062A Comparative DFT Study for RutheniumNil ERTEKİN BİNBAY0https://orcid.org/0000-0002-2488-0378Dicle UniversityHere, a comparative DFT study of a transition metal complex, (pentamethylcyclopentadienyl) (diisopropylmethylphosphine) (chloro) (trichlorosilyl) rutheniumhydride, is reported. The molecule contains a Ruthenium (Ru) atom, which is hard to be handled computationally, just like other transition metals. Every calculation had started from the same point in state space (exact same atomic configurations of the molecule), and used the same computational resources (same software and hardware with same parameters), but five different basis sets; those are, Sapporo Non Relativistic SPK DZP, SBKJ, 3-21G, STO3G and STO6G. Molecule have been optimised for five times with these basis sets. Results have been compared to X-RAY data of the molecule to reveal the performances of these five approximation methods about handling a molecule that contains a transition metal like Ruthenium. It has been found that, unexpectedly, a computationally cheaper method has won the competition and has shown best performance among the others.https://dergipark.org.tr/tr/pub/jotcsa/issue/52506/568062sbkj3-21gsto-6gruthenium
spellingShingle Nil ERTEKİN BİNBAY
A Comparative DFT Study for Ruthenium
Journal of the Turkish Chemical Society, Section A: Chemistry
sbkj
3-21g
sto-6g
ruthenium
title A Comparative DFT Study for Ruthenium
title_full A Comparative DFT Study for Ruthenium
title_fullStr A Comparative DFT Study for Ruthenium
title_full_unstemmed A Comparative DFT Study for Ruthenium
title_short A Comparative DFT Study for Ruthenium
title_sort comparative dft study for ruthenium
topic sbkj
3-21g
sto-6g
ruthenium
url https://dergipark.org.tr/tr/pub/jotcsa/issue/52506/568062
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