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A Density Functional Theory Investigation on Intramolecular Hydrogen Transfer of the [Os-3(CO)(11)P(OMe)(3)(Ru(eta(5)-C5H5))(2)] Cluster
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Metadata
Document Title
A Density Functional Theory Investigation on Intramolecular Hydrogen Transfer of the [Os-3(CO)(11)P(OMe)(3)(Ru(eta(5)-C5H5))(2)] Cluster
Author
Buntem R, Punyain K, Tantirungrotechai Y, Raithby PR, Lewis J
Affiliations
Silpakorn University; Naresuan University; National Science & Technology Development Agency - Thailand; National Nanotechnology Center (NANOTEC); University of Bath; University of Cambridge
Type
Article
Source Title
BULLETIN OF THE KOREAN CHEMICAL SOCIETY
Year
2010
Volume
31
Issue
4
Page
934-940
Open Access
Bronze
Publisher
KOREAN CHEMICAL SOC
DOI
10.5012/bkcs.2010.31.04.934
Format
Abstract
The reduction of [Os-3(CO)(11)P(OMe)(3)] and subsequent ionic coupling of the reduced species with [Ru(eta(5)-C5H5) (CH3CN)] resulted in the formation of [Os-3(CO)(II)P(OMe)(3)(Ru(eta(5)-C5H5))(2)] which can be converted to spiked tetrahedral cluster, [HOs3(CO)(II)P(OMe)(3)Ru-2(eta(5)-C5H5)(C5H4)] via the intramolecular hydrogen transfer Due to the unavailability of a suitable single crystal, the PW91/SDD and LDA/SDD density functional methods were used to predict possible structures and the available spectroscopic information (IR, NMR) of [Os-3(CO)(11)P(OMe)(3)(Ru(eta(5)-C5H5)(2)] The most probable geometry found by constrained search is the isomer (a2) in which the phosphite, P(OMe)(3), occupies an axial position on one of the two osmium atoms that is edge bridged by the Ru(CO)(2)(eta(5)-C5H5) unit By using the most probably geometry, the predicted infrared frequencies and H-1, C-13 and P-31 NMR chemical shifts of the compound are in the same ramie as the experimental values For this type of complex. the LDA/SDD method is appropriate for IR predictions whereas the OPBE/IG LO-II method is appropriate for NMR predictions The activation energy and reaction enemy of the intramolecular hydrogen transfer coupled with the structural change of the transition metal framework were estimated at the PW91/SDD level to be 110 32 and -0 14 kcal/mol respectively
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Funding Sponsor
University of Cambridge; Cambridge Overseas Trust; Cambridge Thai Foundation; Institute for the Promotion of Teaching Science and Technology; Silpakorn University; National Nanotechnology Center; Thailand Research Fund [RSA5180010]; Engineering and Physical Sciences Research Council [EP/D072859/1] Funding Source: researchfish; EPSRC [EP/D072859/1] Funding Source: UKRI
Publication Source
WOS