Matches in SemOpenAlex for { <https://semopenalex.org/work/W1976256260> ?p ?o ?g. }
- W1976256260 endingPage "1791" @default.
- W1976256260 startingPage "1782" @default.
- W1976256260 abstract "Tetranuclear diolefin complexes of the general formula [M4(μ4-PyS2)2(diolefin)4] [M = Rh, diolefin = 1,5-cyclooctadiene (cod) (1), 2,5-norbornadiene (nbd) (2), tetrafluorobenzobarrelene (tfbb) (3); M = Ir, diolefin = cod (4), PyS2 = 2,6-pyridinedithiolate) are prepared in high yield by reaction of the appropriate complex [{M(μ-Cl)(diolefin)}2] with the salt Li2PyS2 generated “in situ”. This method is also used to prepare [Pd4(μ-PyS2)2(allyl)4] (5). Alternative syntheses for these complexes are also described. The structure of 1 was conclusively determined by a single-crystal X-ray analysis. Complex 1 crystallizes in the monoclinic system, space group C2/c, with a = 10.252(1) Å, b = 17.023(2) Å, c = 23.114(3) Å, β = 99.50(1)°, and Z = 4. Refinement by full matrix least-squares gave final R = 0.028 and Rw = 0.024. Complex 1 is tetranuclear with two S,N,S-tridentate 2,6-dimercaptopyridine ligands bridging all of the four metallic centers and presents a crystallographically imposed C2 symmetry relating two “Rh2(μ4-PyS2)(cod)2” moieties. The two S atoms of each bridging ligand exhibit different coordination modes; while one is bonded to one metal, the second one is coordinated to two different rhodium centers. The shortest Rh···Rh separation is 3.1435(5) Å. Carbonylation of the rhodium diolefin complexes under atmospheric pressure gives [Rh4(μ4-PyS2)2(CO)8] (6) which maintains the molecular framework of 1. Further reaction of the carbonyl complex with PPh3 gives [Rh4(μ-PyS2)2(CO)4(PPh3)4] (7), but this complex is prepared more conveniently by reaction of Li2PyS2 with [{Rh(μ-Cl)(CO)(PPh3)}2]. The replacement of CO by PPh3 is not selective, and this complex exists in solution as a mixture of three isomers due to the relative position of the PPh3 groups. The diolefinic and carbonyl complexes are fluxional. Variable temperature 1H and 13C{1H} spectra associated with H,H-COSY experiments led to the assignment of the olefinic resonances and the conclusion that the two diolefins at the inner part of the complexes are rigid, while the two external ones undergo the fluxional behavior due to an inversion at the terminal sulfur donor atoms. This is also the origin of the fluxionality of the carbonyl complex. Deprotonation of Py(SH)2 with [Rh(acac)(cod)] (acac = acetylacetonate) can be carried out stepwise, giving the dinuclear complex [Rh2(μ-PyS2H)2(cod)2] (8), and later the tetranuclear complex 1. This method to synthesize heterotetranuclear complexes by the addition of either [Ir(acac)(cod)] or [{Ir(μ-OMe)(cod)}2] to the isolated dinuclear rhodium complex (8) has been shown to be nonselective, giving a mixture of tetranuclear complexes with the [Rh3Ir]4+, [Rh2Ir2]4+, and [RhIr3]4+ cores. The rhodium complexes undergo two reversible one-electron oxidations at a platinum bead electrode in dichloromethane separated by approximately 0.4 V at potentials E° in the ranges 0.0−0.4 and 0.4−0.8 V. The electrochemical behavior of the iridium complex is more complicated, undergoing two similar one-electron oxidations followed by a chemical reaction." @default.
- W1976256260 created "2016-06-24" @default.
- W1976256260 creator A5001644383 @default.
- W1976256260 creator A5002042279 @default.
- W1976256260 creator A5031291421 @default.
- W1976256260 creator A5074095236 @default.
- W1976256260 creator A5075898630 @default.
- W1976256260 date "1996-01-01" @default.
- W1976256260 modified "2023-10-01" @default.
- W1976256260 title "Synthesis of Rhodium, Iridium, and Palladium Tetranuclear Complexes Directed by 2,6-Dimercaptopyridine. X-ray Crystal Structure of [Rh<sub>4</sub>(μ-PyS<sub>2</sub>)<sub>2</sub>(cod)<sub>4</sub>] (cod = 1,5-Cyclooctadiene)" @default.
- W1976256260 cites W1512520502 @default.
- W1976256260 cites W1602843550 @default.
- W1976256260 cites W1975858139 @default.
- W1976256260 cites W1977734361 @default.
- W1976256260 cites W1981578879 @default.
- W1976256260 cites W1982079850 @default.
- W1976256260 cites W1984849176 @default.
- W1976256260 cites W1998375725 @default.
- W1976256260 cites W2004109782 @default.
- W1976256260 cites W2006501073 @default.
- W1976256260 cites W2008253626 @default.
- W1976256260 cites W2011190695 @default.
- W1976256260 cites W2026512342 @default.
- W1976256260 cites W2032131053 @default.
- W1976256260 cites W2033023034 @default.
- W1976256260 cites W2034402791 @default.
- W1976256260 cites W2037319584 @default.
- W1976256260 cites W2038930318 @default.
- W1976256260 cites W2040331739 @default.
- W1976256260 cites W2041568792 @default.
- W1976256260 cites W2042992238 @default.
- W1976256260 cites W2045094423 @default.
- W1976256260 cites W2053693926 @default.
- W1976256260 cites W2053710196 @default.
- W1976256260 cites W2054574500 @default.
- W1976256260 cites W2054890636 @default.
- W1976256260 cites W2059125981 @default.
- W1976256260 cites W2059401704 @default.
- W1976256260 cites W2060886929 @default.
- W1976256260 cites W2061370482 @default.
- W1976256260 cites W2065948329 @default.
- W1976256260 cites W2074169893 @default.
- W1976256260 cites W2074664906 @default.
- W1976256260 cites W2074802210 @default.
- W1976256260 cites W2075976920 @default.
- W1976256260 cites W2078347043 @default.
- W1976256260 cites W2078500252 @default.
- W1976256260 cites W2080534575 @default.
- W1976256260 cites W2083812715 @default.
- W1976256260 cites W2084118706 @default.
- W1976256260 cites W2084211076 @default.
- W1976256260 cites W2089197606 @default.
- W1976256260 cites W2090876600 @default.
- W1976256260 cites W2095320448 @default.
- W1976256260 cites W2103718345 @default.
- W1976256260 cites W2158995252 @default.
- W1976256260 cites W2165625924 @default.
- W1976256260 cites W2168057513 @default.
- W1976256260 cites W2168198209 @default.
- W1976256260 cites W229144016 @default.
- W1976256260 cites W2411929738 @default.
- W1976256260 cites W4256234511 @default.
- W1976256260 doi "https://doi.org/10.1021/ic950849u" @default.
- W1976256260 hasPublicationYear "1996" @default.
- W1976256260 type Work @default.
- W1976256260 sameAs 1976256260 @default.
- W1976256260 citedByCount "32" @default.
- W1976256260 countsByYear W19762562602015 @default.
- W1976256260 countsByYear W19762562602017 @default.
- W1976256260 countsByYear W19762562602019 @default.
- W1976256260 countsByYear W19762562602021 @default.
- W1976256260 crossrefType "journal-article" @default.
- W1976256260 hasAuthorship W1976256260A5001644383 @default.
- W1976256260 hasAuthorship W1976256260A5002042279 @default.
- W1976256260 hasAuthorship W1976256260A5031291421 @default.
- W1976256260 hasAuthorship W1976256260A5074095236 @default.
- W1976256260 hasAuthorship W1976256260A5075898630 @default.
- W1976256260 hasConcept C115624301 @default.
- W1976256260 hasConcept C120665830 @default.
- W1976256260 hasConcept C121332964 @default.
- W1976256260 hasConcept C161790260 @default.
- W1976256260 hasConcept C168382676 @default.
- W1976256260 hasConcept C178790620 @default.
- W1976256260 hasConcept C185592680 @default.
- W1976256260 hasConcept C207114421 @default.
- W1976256260 hasConcept C2779910884 @default.
- W1976256260 hasConcept C2780669175 @default.
- W1976256260 hasConcept C32909587 @default.
- W1976256260 hasConcept C502130503 @default.
- W1976256260 hasConcept C50515024 @default.
- W1976256260 hasConcept C512735826 @default.
- W1976256260 hasConcept C521398313 @default.
- W1976256260 hasConcept C528581852 @default.
- W1976256260 hasConcept C544153396 @default.
- W1976256260 hasConcept C61276311 @default.
- W1976256260 hasConcept C71240020 @default.
- W1976256260 hasConcept C8010536 @default.
- W1976256260 hasConceptScore W1976256260C115624301 @default.