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The three-center two-positron bond

Computational studies have shown that one or more positrons can stabilize two repelling atomic anions through the formation of two-center positronic bonds. In the present work, we study the energetic stability of a system containing two positrons and three hydride anions, namely 2e(+)[H(3)(3−)]. To...

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Autores principales: Charry, Jorge, Moncada, Félix, Barborini, Matteo, Pedraza-González, Laura, Varella, Márcio T. do N., Tkatchenko, Alexandre, Reyes, Andrés
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9710307/
https://www.ncbi.nlm.nih.gov/pubmed/36544737
http://dx.doi.org/10.1039/d2sc04630j
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author Charry, Jorge
Moncada, Félix
Barborini, Matteo
Pedraza-González, Laura
Varella, Márcio T. do N.
Tkatchenko, Alexandre
Reyes, Andrés
author_facet Charry, Jorge
Moncada, Félix
Barborini, Matteo
Pedraza-González, Laura
Varella, Márcio T. do N.
Tkatchenko, Alexandre
Reyes, Andrés
author_sort Charry, Jorge
collection PubMed
description Computational studies have shown that one or more positrons can stabilize two repelling atomic anions through the formation of two-center positronic bonds. In the present work, we study the energetic stability of a system containing two positrons and three hydride anions, namely 2e(+)[H(3)(3−)]. To this aim, we performed a preliminary scan of the potential energy surface of the system with both electrons and positrons in a spin singlet state, with a multi-component MP2 method, that was further refined with variational and diffusion Monte Carlo calculations, and confirmed an equilibrium geometry with D(3h) symmetry. The local stability of 2e(+)[H(3)(3−)] is demonstrated by analyzing the vertical detachment and adiabatic energy dissociation channels. Bonding properties of the positronic compound, such as the equilibrium interatomic distances, force constants, dissociation energies, and bonding densities are compared with those of the purely electronic H(3)(+) and Li(3)(+) systems. Through this analysis, we find compelling similarities between the 2e(+)[H(3)(3−)] compound and the trilithium cation. Our results strongly point out the formation of a non-electronic three-center two-positron bond, analogous to the well-known three-center two-electron counterparts, which is fundamentally distinct from the two-center two-positron bond [D. Bressanini, J. Chem. Phys., 2021, 155, 054306], thus extending the concept of positron bonded molecules.
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spelling pubmed-97103072022-12-20 The three-center two-positron bond Charry, Jorge Moncada, Félix Barborini, Matteo Pedraza-González, Laura Varella, Márcio T. do N. Tkatchenko, Alexandre Reyes, Andrés Chem Sci Chemistry Computational studies have shown that one or more positrons can stabilize two repelling atomic anions through the formation of two-center positronic bonds. In the present work, we study the energetic stability of a system containing two positrons and three hydride anions, namely 2e(+)[H(3)(3−)]. To this aim, we performed a preliminary scan of the potential energy surface of the system with both electrons and positrons in a spin singlet state, with a multi-component MP2 method, that was further refined with variational and diffusion Monte Carlo calculations, and confirmed an equilibrium geometry with D(3h) symmetry. The local stability of 2e(+)[H(3)(3−)] is demonstrated by analyzing the vertical detachment and adiabatic energy dissociation channels. Bonding properties of the positronic compound, such as the equilibrium interatomic distances, force constants, dissociation energies, and bonding densities are compared with those of the purely electronic H(3)(+) and Li(3)(+) systems. Through this analysis, we find compelling similarities between the 2e(+)[H(3)(3−)] compound and the trilithium cation. Our results strongly point out the formation of a non-electronic three-center two-positron bond, analogous to the well-known three-center two-electron counterparts, which is fundamentally distinct from the two-center two-positron bond [D. Bressanini, J. Chem. Phys., 2021, 155, 054306], thus extending the concept of positron bonded molecules. The Royal Society of Chemistry 2022-10-18 /pmc/articles/PMC9710307/ /pubmed/36544737 http://dx.doi.org/10.1039/d2sc04630j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Charry, Jorge
Moncada, Félix
Barborini, Matteo
Pedraza-González, Laura
Varella, Márcio T. do N.
Tkatchenko, Alexandre
Reyes, Andrés
The three-center two-positron bond
title The three-center two-positron bond
title_full The three-center two-positron bond
title_fullStr The three-center two-positron bond
title_full_unstemmed The three-center two-positron bond
title_short The three-center two-positron bond
title_sort three-center two-positron bond
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9710307/
https://www.ncbi.nlm.nih.gov/pubmed/36544737
http://dx.doi.org/10.1039/d2sc04630j
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