Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)

The ball milling of beryllium chloride with two equivalents of the potassium salt of bis(1,3-trimethylsilyl)allyl anion, K[A′] (A′ = [1,3-(SiMe3)2C3H3]), produces the tris(allyl)beryllate K[BeA’3] (1) rather than the expected neutral BeA’2. The same product is obtained from reaction in hexanes; in c...

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Main Authors: Nicholas C. Boyde, Nicholas R. Rightmire, Timothy P. Hanusa, William W. Brennessel
Format: Article
Language:English
Published: MDPI AG 2017-05-01
Series:Inorganics
Subjects:
Online Access:http://www.mdpi.com/2304-6740/5/2/36
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spelling doaj-70bbe08968d4404db3ce091722d6ce572020-11-25T00:58:04ZengMDPI AGInorganics2304-67402017-05-01523610.3390/inorganics5020036inorganics5020036Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)Nicholas C. Boyde0Nicholas R. Rightmire1Timothy P. Hanusa2William W. Brennessel3Department of Chemistry, Vanderbilt University, Nashville, TN 37235, USADepartment of Chemistry, Vanderbilt University, Nashville, TN 37235, USADepartment of Chemistry, Vanderbilt University, Nashville, TN 37235, USADepartment of Chemistry, University of Rochester, Rochester, NY 14627, USAThe ball milling of beryllium chloride with two equivalents of the potassium salt of bis(1,3-trimethylsilyl)allyl anion, K[A′] (A′ = [1,3-(SiMe3)2C3H3]), produces the tris(allyl)beryllate K[BeA’3] (1) rather than the expected neutral BeA’2. The same product is obtained from reaction in hexanes; in contrast, although a similar reaction conducted in Et2O was previously shown to produce the solvated species BeA’2(OEt2), it can produce 1 if the reaction time is extended (16 h). The tris(allyl)beryllate is fluxional in solution, and displays the strongly downfield 9Be NMR shift expected for a three-coordinate Be center (δ22.8 ppm). A single crystal X-ray structure reveals that the three allyl ligands are bound to beryllium in an arrangement with approximate C3 symmetry (Be–C (avg) = 1.805(10) Å), with the potassium cation engaging in cation–π interactions with the double bonds of the allyl ligands. Similar structures have previously been found in complexes of zinc and tin, i.e., M[M′A′3L] (M′ = Zn, M = Li, Na, K; M′ = Sn, M = K; L = thf). Density functional theory (DFT) calculations indicate that the observed C3-symmetric framework of the isolated anion ([BeA′3]−) is 20 kJ·mol−1 higher in energy than a C1 arrangement; the K+ counterion evidently plays a critical role in templating the final conformation.http://www.mdpi.com/2304-6740/5/2/36allyl ligandsberylliumcoordination modesmechanochemistryX-ray diffractiondensity functional theory calculations
collection DOAJ
language English
format Article
sources DOAJ
author Nicholas C. Boyde
Nicholas R. Rightmire
Timothy P. Hanusa
William W. Brennessel
spellingShingle Nicholas C. Boyde
Nicholas R. Rightmire
Timothy P. Hanusa
William W. Brennessel
Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)
Inorganics
allyl ligands
beryllium
coordination modes
mechanochemistry
X-ray diffraction
density functional theory calculations
author_facet Nicholas C. Boyde
Nicholas R. Rightmire
Timothy P. Hanusa
William W. Brennessel
author_sort Nicholas C. Boyde
title Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)
title_short Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)
title_full Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)
title_fullStr Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)
title_full_unstemmed Symmetric Assembly of a Sterically Encumbered Allyl Complex: Mechanochemical and Solution Synthesis of the Tris(allyl)beryllate, K[BeA′3] (A′ = 1,3-(SiMe3)2C3H3)
title_sort symmetric assembly of a sterically encumbered allyl complex: mechanochemical and solution synthesis of the tris(allyl)beryllate, k[bea′3] (a′ = 1,3-(sime3)2c3h3)
publisher MDPI AG
series Inorganics
issn 2304-6740
publishDate 2017-05-01
description The ball milling of beryllium chloride with two equivalents of the potassium salt of bis(1,3-trimethylsilyl)allyl anion, K[A′] (A′ = [1,3-(SiMe3)2C3H3]), produces the tris(allyl)beryllate K[BeA’3] (1) rather than the expected neutral BeA’2. The same product is obtained from reaction in hexanes; in contrast, although a similar reaction conducted in Et2O was previously shown to produce the solvated species BeA’2(OEt2), it can produce 1 if the reaction time is extended (16 h). The tris(allyl)beryllate is fluxional in solution, and displays the strongly downfield 9Be NMR shift expected for a three-coordinate Be center (δ22.8 ppm). A single crystal X-ray structure reveals that the three allyl ligands are bound to beryllium in an arrangement with approximate C3 symmetry (Be–C (avg) = 1.805(10) Å), with the potassium cation engaging in cation–π interactions with the double bonds of the allyl ligands. Similar structures have previously been found in complexes of zinc and tin, i.e., M[M′A′3L] (M′ = Zn, M = Li, Na, K; M′ = Sn, M = K; L = thf). Density functional theory (DFT) calculations indicate that the observed C3-symmetric framework of the isolated anion ([BeA′3]−) is 20 kJ·mol−1 higher in energy than a C1 arrangement; the K+ counterion evidently plays a critical role in templating the final conformation.
topic allyl ligands
beryllium
coordination modes
mechanochemistry
X-ray diffraction
density functional theory calculations
url http://www.mdpi.com/2304-6740/5/2/36
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