Literature DB >> 23621496

POP-pincer osmium-polyhydrides: head-to-head (Z)-dimerization of terminal alkynes.

Joaquín Alós1, Tamara Bolaño, Miguel A Esteruelas, Montserrat Oliván, Enrique Oñate, Marta Valencia.   

Abstract

A wide range of osmium-polyhydride complexes stabilized by the POP-pincer ligand xant(P(i)Pr2)2 (9,9-dimethyl-4,5-bis(diisopropylphosphino)xanthene) have been synthesized through cis-OsCl2{κ-S-(DMSO)4} (1, DMSO = dimethyl sulfoxide). Treatment of toluene solutions of this adduct with the diphosphine, under reflux, leads to OsCl2{xant(P(i)Pr2)2}(κ-S-DMSO) (2). The reaction of 2 with H2 in the presence of Et3N affords OsH3Cl{xant(P(i)Pr2)2} (3), which can be also prepared by addition of xant(P(i)Pr2)2 to toluene solutions of the unsaturated d(4)-trihydride OsH3Cl(P(i)Pr3)2 (5). Complex 3 reductively eliminates H2 in toluene at 90 °C. In the presence of dimethyl sulfoxide, the resulting monohydride is trapped by the S-donor molecule to give OsHCl{xant(P(i)Pr2)2}(κ-S-DMSO) (6). The reaction of 2 with H2 is sensible to the Brønsted base. Thus, in contrast to Et3N, NaH removes both chloride ligands and the hexahydride OsH6{xant(P(i)Pr2)2} (7), containing a κ(2)-P-binding diphosphine, is formed under 3 atm of hydrogen at 50 °C. Complex 7 releases a H2 molecule to yield the tetrahydride OsH4{xant(P(i)Pr2)2} (8), which can be also prepared by reaction of OsH6(P(i)Pr3)2 (9) with xant(P(i)Pr2)2. Complex 8 reduces H(+) to give, in addition to H2, the oxidized OsH4-species [OsH4(OTf){xant(P(i)Pr2)2}](+) (10, OTf = trifluoromethanesulfonate). The redox process occurs in two stages via the OsH5-cation [OsH5{xant(P(i)Pr2)2}](+) (11). The metal oxidation state four can be recovered. The addition of acetonitrile to 10 leads to [OsH2(η(2)-H2)(CH3CN){xant(P(i)Pr2)2}](2+) (12). The deprotonation of 12 yields the osmium(IV) trihydride [OsH3(CH3CN){xant(P(i)Pr2)2}](+) (13), which is also formed by addition of HOTf to the acetonitrile solutions of 8. The latter is further an efficient catalyst precursor for the head-to-head (Z)-dimerization of phenylacetylene and tert-butylacetylene. During the activation process of the tetrahydride, the bis(alkynyl)vinylidene derivatives Os(C≡CR)2(=C═CHR){xant(P(i)Pr2)2} (R = Ph (14), (t)Bu (15)) are formed.

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Year:  2013        PMID: 23621496     DOI: 10.1021/ic400730a

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  5 in total

1.  Mechanisms for the synthesis of conjugated enynes from diphenylacetylene and trimethylsilylacetylene catalyzed by a nickel(0) complex: DFT study of ligand-controlled selectivity.

Authors:  Cheng Huang; Rongxing He; Wei Shen; Ming Li
Journal:  J Mol Model       Date:  2015-05-03       Impact factor: 1.810

2.  Assembly of a Dihydrideborate and Two Aryl Nitriles to Form a C,N,N'-Pincer Ligand Coordinated to Osmium.

Authors:  Juan C Babón; Miguel A Esteruelas; Israel Fernández; Ana M López; Enrique Oñate
Journal:  Organometallics       Date:  2021-03-11       Impact factor: 3.837

3.  Repercussion of a 1,3-Hydrogen Shift in a Hydride-Osmium-Allenylidene Complex.

Authors:  Miguel A Esteruelas; Enrique Oñate; Sonia Paz; Andrea Vélez
Journal:  Organometallics       Date:  2021-05-12       Impact factor: 3.837

4.  C-Cl Oxidative Addition and C-C Reductive Elimination Reactions in the Context of the Rhodium-Promoted Direct Arylation.

Authors:  Laura A de Las Heras; Miguel A Esteruelas; Montserrat Oliván; Enrique Oñate
Journal:  Organometallics       Date:  2022-03-17       Impact factor: 3.876

5.  Hydration of Aliphatic Nitriles Catalyzed by an Osmium Polyhydride: Evidence for an Alternative Mechanism.

Authors:  Juan C Babón; Miguel A Esteruelas; Ana M López; Enrique Oñate
Journal:  Inorg Chem       Date:  2021-04-27       Impact factor: 5.165

  5 in total

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