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From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies
The inherent tendency of BR fragments to undergo coupling is utilized to predict M(2)B(10)H(10) and M(2)@B(10)H(8) complexes (where M = Mn and Fe). Electronic structure analysis of Mn(2)B(10)H(10) (7) shows that the metal d-orbitals stabilize the interlocked boron wheel structure, forming an unprece...
Autores principales: | , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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The Royal Society of Chemistry
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9365082/ https://www.ncbi.nlm.nih.gov/pubmed/36091213 http://dx.doi.org/10.1039/d2sc02244c |
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author | Ghorai, Sagar Jemmis, Eluvathingal D. |
author_facet | Ghorai, Sagar Jemmis, Eluvathingal D. |
author_sort | Ghorai, Sagar |
collection | PubMed |
description | The inherent tendency of BR fragments to undergo coupling is utilized to predict M(2)B(10)H(10) and M(2)@B(10)H(8) complexes (where M = Mn and Fe). Electronic structure analysis of Mn(2)B(10)H(10) (7) shows that the metal d-orbitals stabilize the interlocked boron wheel structure, forming an unprecedented geometrical pattern with Möbius aromaticity. The two additional electrons in Fe(2)@B(10)H(10) (8) stabilize a twisted [10]boraannulene structure. The removal of 2H from 7 and 8 leads to the planar structures Mn(2)@B(10)H(8) (11) and Fe(2)@B(10)H(8) (10), respectively. The stability of the planar arrangements is due to multicentered (σ + π) bonding, where π-donation occurs from the M(2) (M = Fe and Mn) unit to the borocyclic unit. The presence of 10π electrons in M(2)@B(10)H(8) relates it to naphthalene, having Hückel π-aromaticity. The condensation of naphthalene to graphene in two dimensions suggests the ability to build the different metal boride monolayers FeB(5) and Fe(2)B(5), considering Fe(2)@B(10) as the building block, bringing this molecular boron chemistry into the solid state. One of the predicted monolayers, β-Fe(2)B(5), is found to be the global minimum in the planar arrangement based on a USPEX crystal structure search algorithm. Electronic structure analysis further shows that the stabilization mechanism in the molecular building block remains unaltered in the solid state. |
format | Online Article Text |
id | pubmed-9365082 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-93650822022-09-08 From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies Ghorai, Sagar Jemmis, Eluvathingal D. Chem Sci Chemistry The inherent tendency of BR fragments to undergo coupling is utilized to predict M(2)B(10)H(10) and M(2)@B(10)H(8) complexes (where M = Mn and Fe). Electronic structure analysis of Mn(2)B(10)H(10) (7) shows that the metal d-orbitals stabilize the interlocked boron wheel structure, forming an unprecedented geometrical pattern with Möbius aromaticity. The two additional electrons in Fe(2)@B(10)H(10) (8) stabilize a twisted [10]boraannulene structure. The removal of 2H from 7 and 8 leads to the planar structures Mn(2)@B(10)H(8) (11) and Fe(2)@B(10)H(8) (10), respectively. The stability of the planar arrangements is due to multicentered (σ + π) bonding, where π-donation occurs from the M(2) (M = Fe and Mn) unit to the borocyclic unit. The presence of 10π electrons in M(2)@B(10)H(8) relates it to naphthalene, having Hückel π-aromaticity. The condensation of naphthalene to graphene in two dimensions suggests the ability to build the different metal boride monolayers FeB(5) and Fe(2)B(5), considering Fe(2)@B(10) as the building block, bringing this molecular boron chemistry into the solid state. One of the predicted monolayers, β-Fe(2)B(5), is found to be the global minimum in the planar arrangement based on a USPEX crystal structure search algorithm. Electronic structure analysis further shows that the stabilization mechanism in the molecular building block remains unaltered in the solid state. The Royal Society of Chemistry 2022-06-27 /pmc/articles/PMC9365082/ /pubmed/36091213 http://dx.doi.org/10.1039/d2sc02244c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Ghorai, Sagar Jemmis, Eluvathingal D. From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies |
title | From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies |
title_full | From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies |
title_fullStr | From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies |
title_full_unstemmed | From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies |
title_short | From a Möbius-aromatic interlocked Mn(2)B(10)H(10) wheel to the metal-doped boranaphthalenes M(2)@B(10)H(8) and M(2)B(5) 2D-sheets (M = Mn and Fe): a molecules to materials continuum using DFT studies |
title_sort | from a möbius-aromatic interlocked mn(2)b(10)h(10) wheel to the metal-doped boranaphthalenes m(2)@b(10)h(8) and m(2)b(5) 2d-sheets (m = mn and fe): a molecules to materials continuum using dft studies |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9365082/ https://www.ncbi.nlm.nih.gov/pubmed/36091213 http://dx.doi.org/10.1039/d2sc02244c |
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