Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material

We report a theoretical study of linear acene (n=1 to 7) linked thiophene functionality. The total ground state energies, HOMO-LUMO energy gap, frontier orbitals energies, electron affinity and ionization potential are calculated at DFT-B3LYP/6-311G* and MP2/6-311G* exchange level of the theory and...

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Main Authors: Saeed, Mohammad Alam, Shaari, A., Sahnoun, Riadh, Yusoof, Masood, Musa, Auwalu
Format: Conference or Workshop Item
Language:English
Published: 2015
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Online Access:http://eprints.utm.my/id/eprint/62233/1/MohammadAlamSaeed2015_GroundStateEnergyElectronicandChemicalProperties.pdf
http://eprints.utm.my/id/eprint/62233/
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.622332017-05-14T03:29:17Z http://eprints.utm.my/id/eprint/62233/ Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material Saeed, Mohammad Alam Shaari, A. Sahnoun, Riadh Yusoof, Masood Musa, Auwalu QD Chemistry We report a theoretical study of linear acene (n=1 to 7) linked thiophene functionality. The total ground state energies, HOMO-LUMO energy gap, frontier orbitals energies, electron affinity and ionization potential are calculated at DFT-B3LYP/6-311G* and MP2/6-311G* exchange level of the theory and basis set. The results show a good agreement when compared with the theoretical and experimental values. It is found that total ground energy of the system, HOMO-LUMO gaps energy, electrophilicity, electronegativity and chemical hardness decrease with the increasing number of electrons or acenes ring. The global chemical indices; electronegativity (χ) , electrophilicity (ɷ) and chemical hardness (ɳ) is observed to decrease as the number of electrons in acenes ring increase, whereas softness(S) and chemical potential (µ) increases with the increasing number of electrons around molecules. Also, the frontier orbital energies, Ionization energies, and electron affinity results show an improvement as compared to the acenes molecules. 2015 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/62233/1/MohammadAlamSaeed2015_GroundStateEnergyElectronicandChemicalProperties.pdf Saeed, Mohammad Alam and Shaari, A. and Sahnoun, Riadh and Yusoof, Masood and Musa, Auwalu (2015) Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material. In: 1st ICRIL-International Conference on Innovation in Science and Technology (LICIST 2015), 20 April, 2015, Kuala Lumpur, Malaysia.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QD Chemistry
spellingShingle QD Chemistry
Saeed, Mohammad Alam
Shaari, A.
Sahnoun, Riadh
Yusoof, Masood
Musa, Auwalu
Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material
description We report a theoretical study of linear acene (n=1 to 7) linked thiophene functionality. The total ground state energies, HOMO-LUMO energy gap, frontier orbitals energies, electron affinity and ionization potential are calculated at DFT-B3LYP/6-311G* and MP2/6-311G* exchange level of the theory and basis set. The results show a good agreement when compared with the theoretical and experimental values. It is found that total ground energy of the system, HOMO-LUMO gaps energy, electrophilicity, electronegativity and chemical hardness decrease with the increasing number of electrons or acenes ring. The global chemical indices; electronegativity (χ) , electrophilicity (ɷ) and chemical hardness (ɳ) is observed to decrease as the number of electrons in acenes ring increase, whereas softness(S) and chemical potential (µ) increases with the increasing number of electrons around molecules. Also, the frontier orbital energies, Ionization energies, and electron affinity results show an improvement as compared to the acenes molecules.
format Conference or Workshop Item
author Saeed, Mohammad Alam
Shaari, A.
Sahnoun, Riadh
Yusoof, Masood
Musa, Auwalu
author_facet Saeed, Mohammad Alam
Shaari, A.
Sahnoun, Riadh
Yusoof, Masood
Musa, Auwalu
author_sort Saeed, Mohammad Alam
title Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material
title_short Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material
title_full Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material
title_fullStr Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material
title_full_unstemmed Ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material
title_sort ground state energy, electronic and chemical properties: an investigation of linear acenes (n=1 to 7) linked thiophene for organic electronic material
publishDate 2015
url http://eprints.utm.my/id/eprint/62233/1/MohammadAlamSaeed2015_GroundStateEnergyElectronicandChemicalProperties.pdf
http://eprints.utm.my/id/eprint/62233/
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