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EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)]

[Image: see text] Herein, we report on the stability and bonding analysis of donor-base-stabilized monomeric AlP species (1–6) of the general formula (L)P–Al(L′); [L = cAAC(Me), L′ = cAAC(Me), NHC(Me), PMe(3), (N(i)Pr(2))(2) (1–4); L = L′ = NHC(Me), PMe(3) (5 and 6); cAAC = cyclic alkyl(amino) carbe...

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Autores principales: Francis, Maria, Roy, Sudipta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8867586/
https://www.ncbi.nlm.nih.gov/pubmed/35224333
http://dx.doi.org/10.1021/acsomega.1c05476
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author Francis, Maria
Roy, Sudipta
author_facet Francis, Maria
Roy, Sudipta
author_sort Francis, Maria
collection PubMed
description [Image: see text] Herein, we report on the stability and bonding analysis of donor-base-stabilized monomeric AlP species (1–6) of the general formula (L)P–Al(L′); [L = cAAC(Me), L′ = cAAC(Me), NHC(Me), PMe(3), (N(i)Pr(2))(2) (1–4); L = L′ = NHC(Me), PMe(3) (5 and 6); cAAC = cyclic alkyl(amino) carbene; NHC = N-heterocyclic carbene]. Energy decomposition analysis coupled with natural orbitals for chemical valence (EDA-NOCV) analysis indicates the synthetic viability of this class of species, stabilized in their singlet ground state, in the laboratory. The C(L)–P bond is found to be a partial double bond (WBI ∼ 1.45), while the C(L)/P(L)–Al bond is a single bond (WBI ∼ 0.42–0.69). These bonds are mostly covalent or dative σ/π bonds depending upon the ligands attached. The central P–Al bond is an electron-sharing covalent polar single bond (WBI ∼ 0.80; P–Al) for 1–4 and a dative σ bond for 5 and 6 (WBI ∼ 0.89–0.93; P–Al). The calculated intrinsic interaction energies of the central P–Al bonds are found to be in the range from −116 to −216 kcal/mol (1–3 and 5 and 6). This value is the highest for compound 3, possibly due to the push and pull effects from the ligands PMe(3) and cAAC, respectively.
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spelling pubmed-88675862022-02-25 EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)] Francis, Maria Roy, Sudipta ACS Omega [Image: see text] Herein, we report on the stability and bonding analysis of donor-base-stabilized monomeric AlP species (1–6) of the general formula (L)P–Al(L′); [L = cAAC(Me), L′ = cAAC(Me), NHC(Me), PMe(3), (N(i)Pr(2))(2) (1–4); L = L′ = NHC(Me), PMe(3) (5 and 6); cAAC = cyclic alkyl(amino) carbene; NHC = N-heterocyclic carbene]. Energy decomposition analysis coupled with natural orbitals for chemical valence (EDA-NOCV) analysis indicates the synthetic viability of this class of species, stabilized in their singlet ground state, in the laboratory. The C(L)–P bond is found to be a partial double bond (WBI ∼ 1.45), while the C(L)/P(L)–Al bond is a single bond (WBI ∼ 0.42–0.69). These bonds are mostly covalent or dative σ/π bonds depending upon the ligands attached. The central P–Al bond is an electron-sharing covalent polar single bond (WBI ∼ 0.80; P–Al) for 1–4 and a dative σ bond for 5 and 6 (WBI ∼ 0.89–0.93; P–Al). The calculated intrinsic interaction energies of the central P–Al bonds are found to be in the range from −116 to −216 kcal/mol (1–3 and 5 and 6). This value is the highest for compound 3, possibly due to the push and pull effects from the ligands PMe(3) and cAAC, respectively. American Chemical Society 2022-02-10 /pmc/articles/PMC8867586/ /pubmed/35224333 http://dx.doi.org/10.1021/acsomega.1c05476 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Francis, Maria
Roy, Sudipta
EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)]
title EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)]
title_full EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)]
title_fullStr EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)]
title_full_unstemmed EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)]
title_short EDA-NOCV Analysis of Donor-Base-Stabilized Elusive Monomeric Aluminum Phosphides [(L)P–Al(L′); L, L′ = cAAC(Me), NHC(Me), PMe(3)]
title_sort eda-nocv analysis of donor-base-stabilized elusive monomeric aluminum phosphides [(l)p–al(l′); l, l′ = caac(me), nhc(me), pme(3)]
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8867586/
https://www.ncbi.nlm.nih.gov/pubmed/35224333
http://dx.doi.org/10.1021/acsomega.1c05476
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