Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and Nickel

Metal induced stabilization of α-carbocations is well known for cobalt- and molybdenum complexed propargyl cations. The same principle also allows access to reactivity enhancement of metal coordinated halo- and hydrosilylalkynes. In a previous study, we have shown that coordination of olig...

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Main Authors: Michaela Zirngast, Christoph Marschner, Judith Baumgartner
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/24/1/205
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spelling doaj-daa960dff9974006aef67e3a3c604de92020-11-25T00:09:19ZengMDPI AGMolecules1420-30492019-01-0124120510.3390/molecules24010205molecules24010205Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and NickelMichaela Zirngast0Christoph Marschner1Judith Baumgartner2Institut für Anorganische Chemie, Technische Universität Graz, Stremayrgasse 9, A-8010 Graz, AustriaInstitut für Anorganische Chemie, Technische Universität Graz, Stremayrgasse 9, A-8010 Graz, AustriaInstitut für Anorganische Chemie, Technische Universität Graz, Stremayrgasse 9, A-8010 Graz, AustriaMetal induced stabilization of α-carbocations is well known for cobalt- and molybdenum complexed propargyl cations. The same principle also allows access to reactivity enhancement of metal coordinated halo- and hydrosilylalkynes. In a previous study, we have shown that coordination of oligosilanylalkynes to the dicobalthexacarbonyl fragment induces striking reactivity to the oligosilanyl part. The current paper extends this set of oligosilanylalkyne complexes to a number of new dicobalthexacarbonyl complexes but also to 1,2-bis(cyclopentadienyl)tetracarbonyldimolybdenum and (dippe)Ni complexes. NMR-Spectroscopic and crystallographic analysis of the obtained complexes clearly show that the dimetallic cobalt and molybdenum complexes cause rehybridization of the alkyne carbon atoms to sp3, while in the nickel complexes one π-bond of the alkyne is retained. For the dicobalt and dimolybdenum complexes, strongly deshielded 29Si NMR resonances of the attached silicon atoms indicate enhanced reactivity, whereas the 29Si NMR shifts of the respective nickel complexes are similar to that of respective vinylsilanes.http://www.mdpi.com/1420-3049/24/1/205oligosilanylalkynestransition metal alkyne complexesSi-Si bond activation
collection DOAJ
language English
format Article
sources DOAJ
author Michaela Zirngast
Christoph Marschner
Judith Baumgartner
spellingShingle Michaela Zirngast
Christoph Marschner
Judith Baumgartner
Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and Nickel
Molecules
oligosilanylalkynes
transition metal alkyne complexes
Si-Si bond activation
author_facet Michaela Zirngast
Christoph Marschner
Judith Baumgartner
author_sort Michaela Zirngast
title Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and Nickel
title_short Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and Nickel
title_full Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and Nickel
title_fullStr Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and Nickel
title_full_unstemmed Spectroscopic and Structural Study of Some Oligosilanylalkyne Complexes of Cobalt, Molybdenum and Nickel
title_sort spectroscopic and structural study of some oligosilanylalkyne complexes of cobalt, molybdenum and nickel
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2019-01-01
description Metal induced stabilization of α-carbocations is well known for cobalt- and molybdenum complexed propargyl cations. The same principle also allows access to reactivity enhancement of metal coordinated halo- and hydrosilylalkynes. In a previous study, we have shown that coordination of oligosilanylalkynes to the dicobalthexacarbonyl fragment induces striking reactivity to the oligosilanyl part. The current paper extends this set of oligosilanylalkyne complexes to a number of new dicobalthexacarbonyl complexes but also to 1,2-bis(cyclopentadienyl)tetracarbonyldimolybdenum and (dippe)Ni complexes. NMR-Spectroscopic and crystallographic analysis of the obtained complexes clearly show that the dimetallic cobalt and molybdenum complexes cause rehybridization of the alkyne carbon atoms to sp3, while in the nickel complexes one π-bond of the alkyne is retained. For the dicobalt and dimolybdenum complexes, strongly deshielded 29Si NMR resonances of the attached silicon atoms indicate enhanced reactivity, whereas the 29Si NMR shifts of the respective nickel complexes are similar to that of respective vinylsilanes.
topic oligosilanylalkynes
transition metal alkyne complexes
Si-Si bond activation
url http://www.mdpi.com/1420-3049/24/1/205
work_keys_str_mv AT michaelazirngast spectroscopicandstructuralstudyofsomeoligosilanylalkynecomplexesofcobaltmolybdenumandnickel
AT christophmarschner spectroscopicandstructuralstudyofsomeoligosilanylalkynecomplexesofcobaltmolybdenumandnickel
AT judithbaumgartner spectroscopicandstructuralstudyofsomeoligosilanylalkynecomplexesofcobaltmolybdenumandnickel
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