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External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation

σ-hole and lone-pair (lp) hole interactions of trivalent pnicogen-bearing (ZF(3)) compounds were comparatively scrutinized, for the first time, under field-free and external electric field (EEF) conditions. Conspicuously, the sizes of the σ-hole and lp-hole were increased by applying an EEF along th...

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Autores principales: Ibrahim, Mahmoud A. A., Saad, Sherif M. A., Al-Fahemi, Jabir H., Mekhemer, Gamal A. H., Ahmed, Saleh A., Shawky, Ahmed M., Moussa, Nayra A. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8694126/
https://www.ncbi.nlm.nih.gov/pubmed/35424345
http://dx.doi.org/10.1039/d0ra09765a
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author Ibrahim, Mahmoud A. A.
Saad, Sherif M. A.
Al-Fahemi, Jabir H.
Mekhemer, Gamal A. H.
Ahmed, Saleh A.
Shawky, Ahmed M.
Moussa, Nayra A. M.
author_facet Ibrahim, Mahmoud A. A.
Saad, Sherif M. A.
Al-Fahemi, Jabir H.
Mekhemer, Gamal A. H.
Ahmed, Saleh A.
Shawky, Ahmed M.
Moussa, Nayra A. M.
author_sort Ibrahim, Mahmoud A. A.
collection PubMed
description σ-hole and lone-pair (lp) hole interactions of trivalent pnicogen-bearing (ZF(3)) compounds were comparatively scrutinized, for the first time, under field-free and external electric field (EEF) conditions. Conspicuously, the sizes of the σ-hole and lp-hole were increased by applying an EEF along the positive direction, while the sizes of both holes decreased through the reverse EEF direction. The MP2 energetic calculations of ZF(3)⋯FH/NCH complexes revealed that σ-holes exhibited more impressive interaction energies compared to the lp-holes. Remarkably, the strengths of σ-hole and lp-hole interactions evolved with the increment of the positive value of the considered EEF; i.e., the interaction energy increased as the utilized EEF value increased. Unexpectedly, under field-free conditions, nitrogen-bearing complexes showed superior strength for their lp-hole interactions than phosphorus-bearing complexes. However, the reverse picture was exhibited for the interaction energies of nitrogen- and phosphorus-bearing complexes interacting within lp-holes by applying the high values of a positively directed EEF. These results significantly demonstrate the crucial influence of EEF on the strength of σ-hole and lp-hole interactions, which in turn leads to an omnipresent enhancement for variable fields, including biological simulations and material science.
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spelling pubmed-86941262022-04-13 External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation Ibrahim, Mahmoud A. A. Saad, Sherif M. A. Al-Fahemi, Jabir H. Mekhemer, Gamal A. H. Ahmed, Saleh A. Shawky, Ahmed M. Moussa, Nayra A. M. RSC Adv Chemistry σ-hole and lone-pair (lp) hole interactions of trivalent pnicogen-bearing (ZF(3)) compounds were comparatively scrutinized, for the first time, under field-free and external electric field (EEF) conditions. Conspicuously, the sizes of the σ-hole and lp-hole were increased by applying an EEF along the positive direction, while the sizes of both holes decreased through the reverse EEF direction. The MP2 energetic calculations of ZF(3)⋯FH/NCH complexes revealed that σ-holes exhibited more impressive interaction energies compared to the lp-holes. Remarkably, the strengths of σ-hole and lp-hole interactions evolved with the increment of the positive value of the considered EEF; i.e., the interaction energy increased as the utilized EEF value increased. Unexpectedly, under field-free conditions, nitrogen-bearing complexes showed superior strength for their lp-hole interactions than phosphorus-bearing complexes. However, the reverse picture was exhibited for the interaction energies of nitrogen- and phosphorus-bearing complexes interacting within lp-holes by applying the high values of a positively directed EEF. These results significantly demonstrate the crucial influence of EEF on the strength of σ-hole and lp-hole interactions, which in turn leads to an omnipresent enhancement for variable fields, including biological simulations and material science. The Royal Society of Chemistry 2021-01-19 /pmc/articles/PMC8694126/ /pubmed/35424345 http://dx.doi.org/10.1039/d0ra09765a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Ibrahim, Mahmoud A. A.
Saad, Sherif M. A.
Al-Fahemi, Jabir H.
Mekhemer, Gamal A. H.
Ahmed, Saleh A.
Shawky, Ahmed M.
Moussa, Nayra A. M.
External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation
title External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation
title_full External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation
title_fullStr External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation
title_full_unstemmed External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation
title_short External electric field effects on the σ-hole and lone-pair hole interactions of group V elements: a comparative investigation
title_sort external electric field effects on the σ-hole and lone-pair hole interactions of group v elements: a comparative investigation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8694126/
https://www.ncbi.nlm.nih.gov/pubmed/35424345
http://dx.doi.org/10.1039/d0ra09765a
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