Itziar Zumeta
University of the Basque Country
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Dalton Transactions | 2013
María A. Garralda; Claudio Mendicute-Fierro; Antonio Rodríguez-Diéguez; José M. Seco; Carlos Ubide; Itziar Zumeta
The dihydridoirida-β-diketone [IrH2{(PPh2(o-C6H4CO))2H}] (2) has been used as a homogeneous catalyst for the hydrolysis of ammonia- or amine-boranes to generate up to 3 equivalents of hydrogen in the presence of air. When using 0.5 mol% loading of 2, dimethylamine-borane is hydrolysed completely within 8 min at 30 °C and maintains its activity in consecutive runs. Ammonia-borane or tert-butylamine-borane is hydrolysed completely within 32 or 25 min respectively. Triethylamine-borane fails to be hydrolysed. Kinetic studies suggest a sequence of two consecutive first-order reactions, in which an intermediate builds up and finally falls, with the first step being the rate controlling step. ΔH1(‡) are in the range 65-85 kJ mol(-1) and negative values of ΔS1(‡) are obtained. A multinuclear NMR study of the catalyzed reaction shows the formation of a resting state (A) of the active catalyst proposed to be of the hydridodiacyl type [IrH(PPh2(o-C6H4CO))2(solvent)] with a hydride trans to the acyl group. In the absence of substrate a dormant species (B) is formed. By the reaction of hydridoirida-β-diketones with ammonia, the hydridoirida-β-ketoimine [IrHCl{(PPh2(o-C6H4CO))(PPh2(o-C6H4CNH))H}] (3) and the hydridobis(acylphosphane)aminoiridium(III) complex [IrH(PPh2(o-C6H4CO))2(NH3)] (4), with a hydride trans to phosphane, are formed. Aromatic amines such as aniline or anisidines afford cationic [IrH{(PPh2(o-C6H4CO))2H}(C6H4RNH2)]ClO4 (R = H (6); p-MeO (7); o-MeO (8)) hydridoirida-β-diketones with a coordinated amine group trans to the hydride. The dormant species B is proposed to be of the hydridobis(acylphosphine)aminoiridium(III) type with a hydride trans to the amine group.
Archive | 2016
Itziar Zumeta; Claudio Mendicute-Fierro; Itxaso Bustos; Miguel A. Huertos; Antonio Rodríguez-Diéguez; José M. Seco; Eider San Sebastian; María A. Garralda
Related Article: Itziar Zumeta, Claudio Mendicute-Fierro, Itxaso Bustos, Miguel A. Huertos, Antonio Rodriguez-Dieguez, Jose M. Seco, Eider San Sebastian, and Maria A. Garralda|2016|Inorg.Chem.|55|10284|doi:10.1021/acs.inorgchem.6b01550
Archive | 2016
Itziar Zumeta; Claudio Mendicute-Fierro; Itxaso Bustos; Miguel A. Huertos; Antonio Rodríguez-Diéguez; José M. Seco; Eider San Sebastian; María A. Garralda
Related Article: Itziar Zumeta, Claudio Mendicute-Fierro, Itxaso Bustos, Miguel A. Huertos, Antonio Rodriguez-Dieguez, Jose M. Seco, Eider San Sebastian, and Maria A. Garralda|2016|Inorg.Chem.|55|10284|doi:10.1021/acs.inorgchem.6b01550
Archive | 2016
Itziar Zumeta; Claudio Mendicute-Fierro; Itxaso Bustos; Miguel A. Huertos; Antonio Rodríguez-Diéguez; José M. Seco; Eider San Sebastian; María A. Garralda
Related Article: Itziar Zumeta, Claudio Mendicute-Fierro, Itxaso Bustos, Miguel A. Huertos, Antonio Rodriguez-Dieguez, Jose M. Seco, Eider San Sebastian, and Maria A. Garralda|2016|Inorg.Chem.|55|10284|doi:10.1021/acs.inorgchem.6b01550
Organometallics | 2014
Virginia San Nacianceno; Lourdes Ibarlucea; Claudio Mendicute-Fierro; Antonio Rodríguez-Diéguez; José M. Seco; Itziar Zumeta; Carlos Ubide; María A. Garralda
Organometallics | 2014
Itziar Zumeta; Tim Kluge; Claudio Mendicute-Fierro; Cristoph Wagner; Lourdes Ibarlucea; Tobias Rüffer; Virginia San Nacianceno; Dirk Steinborn; María A. Garralda
Organometallics | 2015
Itziar Zumeta; Claudio Mendicute-Fierro; Antonio Rodríguez-Diéguez; José M. Seco; María A. Garralda
Inorganic Chemistry | 2016
Itziar Zumeta; Claudio Mendicute-Fierro; Itxaso Bustos; Miguel A. Huertos; Antonio Rodríguez-Diéguez; José M. Seco; Eider San Sebastian; María A. Garralda
European Journal of Inorganic Chemistry | 2016
Itziar Zumeta; Claudio Mendicute-Fierro; Antonio Rodríguez-Diéguez; José M. Seco; María A. Garralda
European Journal of Inorganic Chemistry | 2016
Itziar Zumeta; Claudio Mendicute-Fierro; Antonio Rodríguez-Diéguez; José M. Seco; María A. Garralda