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Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel

Despite the isovalency between Al and B elements, Al-doping in boron clusters can deviate substantially from an isoelectronic substitution process. We report herein on a unique sandwich di-Al-doped boron cluster, Al(2)B(8), using global structural searches and quantum chemical calculations. The clus...

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Autores principales: Yue, Rong-Xin, Gao, Shu-Juan, Han, Peng-Fei, Zhai, Hua-Jin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9833104/
https://www.ncbi.nlm.nih.gov/pubmed/36712639
http://dx.doi.org/10.1039/d2ra07268h
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author Yue, Rong-Xin
Gao, Shu-Juan
Han, Peng-Fei
Zhai, Hua-Jin
author_facet Yue, Rong-Xin
Gao, Shu-Juan
Han, Peng-Fei
Zhai, Hua-Jin
author_sort Yue, Rong-Xin
collection PubMed
description Despite the isovalency between Al and B elements, Al-doping in boron clusters can deviate substantially from an isoelectronic substitution process. We report herein on a unique sandwich di-Al-doped boron cluster, Al(2)B(8), using global structural searches and quantum chemical calculations. The cluster features a perfectly planar B(8) molecular wheel, with two isolated Al atoms symmetrically floating above and below it. The two Al atoms are offset from the center of the molecular wheel, resulting in a C(2v) symmetry for the cluster. The Al(2)B(8) cluster is shown to be dynamically fluxional even at far below room temperature (100 K), in which a vertical Al(2) rod slides or rotates freely within a circular rail on the B(8) plate, although there is no direct Al–Al interaction. The energy barrier for intramolecular rotation is only 0.01 kcal mol(−1) at the single-point CCSD(T) level. Chemical bonding analysis shows that the cluster is a charge–transfer complex and can be formulated as [Al](+)[B(8)](2−)[Al](+). The [B(8)](2−) molecular wheel in sandwich cluster has magic 6π/6σ double aromaticity, which underlies the dynamic fluxionality, despite strong electrostatic interactions between the [Al](+), [B(8)](2−), and [Al](+) layers.
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spelling pubmed-98331042023-01-26 Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel Yue, Rong-Xin Gao, Shu-Juan Han, Peng-Fei Zhai, Hua-Jin RSC Adv Chemistry Despite the isovalency between Al and B elements, Al-doping in boron clusters can deviate substantially from an isoelectronic substitution process. We report herein on a unique sandwich di-Al-doped boron cluster, Al(2)B(8), using global structural searches and quantum chemical calculations. The cluster features a perfectly planar B(8) molecular wheel, with two isolated Al atoms symmetrically floating above and below it. The two Al atoms are offset from the center of the molecular wheel, resulting in a C(2v) symmetry for the cluster. The Al(2)B(8) cluster is shown to be dynamically fluxional even at far below room temperature (100 K), in which a vertical Al(2) rod slides or rotates freely within a circular rail on the B(8) plate, although there is no direct Al–Al interaction. The energy barrier for intramolecular rotation is only 0.01 kcal mol(−1) at the single-point CCSD(T) level. Chemical bonding analysis shows that the cluster is a charge–transfer complex and can be formulated as [Al](+)[B(8)](2−)[Al](+). The [B(8)](2−) molecular wheel in sandwich cluster has magic 6π/6σ double aromaticity, which underlies the dynamic fluxionality, despite strong electrostatic interactions between the [Al](+), [B(8)](2−), and [Al](+) layers. The Royal Society of Chemistry 2023-01-11 /pmc/articles/PMC9833104/ /pubmed/36712639 http://dx.doi.org/10.1039/d2ra07268h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yue, Rong-Xin
Gao, Shu-Juan
Han, Peng-Fei
Zhai, Hua-Jin
Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel
title Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel
title_full Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel
title_fullStr Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel
title_full_unstemmed Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel
title_short Chemical bonding and dynamic structural fluxionality of a boron-based Al(2)B(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [B(8)](2−) molecular wheel
title_sort chemical bonding and dynamic structural fluxionality of a boron-based al(2)b(8) binary cluster: the robustness of a doubly 6π/6σ aromatic [b(8)](2−) molecular wheel
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9833104/
https://www.ncbi.nlm.nih.gov/pubmed/36712639
http://dx.doi.org/10.1039/d2ra07268h
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