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Dive into the research topics where Carmen R. Barone is active.

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Featured researches published by Carmen R. Barone.


Dalton Transactions | 2012

Modulation of properties in analogues of Zeise's anion on changing the ligand trans to ethene. X-Ray crystal structures of trans-[PtCl2(OH)(η2-C2H4)]− and trans-[PtCl2(η1-CH2NO2)(η2-C2H4)]−

Michele Benedetti; Carmen R. Barone; Daniela Antonucci; Vita M. Vecchio; Andrea Ienco; Luciana Maresca; Giovanni Natile; Francesco P. Fanizzi

To get further insight in the reaction of nucleophilic substitution upon changing the ligand trans to a η(2)-olefin, the reactivity of some monoanionic platinum(II) complexes (trans-[PtCl(2)X(η(2)-C(2)H(4))](-), X = Cl(-), 1, OH(-), 2, and CH(2)NO(2)(-), 3) towards pyridines with different steric hindrance (py, 4-Mepy, and 2,6-Me(2)py) has been tested. All crystallographic (2 and 3 reported for the first time) and spectroscopic data are in accord with a platinum-olefin interaction decreasing in the order 2 > 1 > 3, paralleling the decreasing electronegativity of the donor atom (O > Cl > C). Not only the platinum-olefin bond but also the bond between platinum and the ligand trans to the olefin appear to be strongest in 2 (Pt-O distance at the lower limit for this type of bond). In the reaction with py, the ligand trans to the olefin is displaced in 1 and 2. Moreover the reaction is in equilibrium in the case of sterically hindered 2,6-Me(2)py, the equilibrium being shifted moderately or prevalently toward the reagents in the case of 1 and 2, respectively. In the case of 3, the reaction with pyridines leads to substitution of the olefin instead of the carbanion. This is in accord with the observation that carbanions strongly weaken the trans Pt-olefin bond.


European Journal of Inorganic Chemistry | 2007

Aiding Factors in the Formation of Azaplatinacyclobutane Rings – X‐ray and Crystal Structure of [Pt{CH(Ph)CH2NEt2‐κC,κN}(N,N,N′,N′‐tetramethylethylenediamine)]+ and of Its Open‐Chain Precursor

Giuseppe Lorusso; Carmen R. Barone; Nicola G. Di Masi; Concetta Pacifico; Luciana Maresca; Giovanni Natile


Dalton Transactions | 2014

H/D exchange at sp3 carbons in the coordination sphere of platinum(II)

Michele Benedetti; Carmen R. Barone; Chiara R. Girelli; Francesco P. Fanizzi; Giovanni Natile; Luciana Maresca


Journal of Organometallic Chemistry | 2008

A NMR, X-ray, and DFT combined study on the regio-chemistry of nucleophilic addition to platinum(II) coordinated terminal olefins

Carmen R. Barone; Renzo Cini; Eric Clot; Odile Eisenstein; Luciana Maresca; Giovanni Natile; Gabriella Tamasi


Inorganica Chimica Acta | 2011

A new polymorph of dichlorido(1,10-phenanthroline)platinum(II)

Carmen R. Barone; Luciana Maresca; Giovanni Natile; Concetta Pacifico


Organometallics | 2010

Deprotonation versus Nucleophilic Substitution in Some Platinum(II) Coordinated Olefins Containing an Electron Withdrawing Group

Carmen R. Barone; Sara de Pinto; Giuseppe Lorusso; Nicola G. Di Masi; Luciana Maresca; Giovanni Natile


Inorganica Chimica Acta | 2010

Coupling of cationic olefin complexes of platinum(II) with potential ambident nucleophiles

Carmen R. Barone; Renzo Cini; Sara de Pinto; Nicola G. Di Masi; Luciana Maresca; Giovanni Natile; Gabriella Tamasi


Inorganica Chimica Acta | 2012

Activation of ketones by electrophilic metal complexes: Synthesis of some ketonyl platinum(II) complexes and X-ray crystal structure of [PtCl{CH2C(O)CH3}(1,10-phenanthroline)]·1/2Y (Y = H2O or CH2Cl2)

Carmen R. Barone; Sara de Pinto; Luciana Maresca; Giovanni Natile; Concetta Pacifico


Dalton Transactions | 2008

New chemistry of olefin complexes of platinum(II) unravelled by basic conditions: synthesis and properties of elusive cationic species.

Carmen R. Barone; Michele Benedetti; Vita M. Vecchio; Francesco P. Fanizzi; Luciana Maresca; Giovanni Natile


Inorganica Chimica Acta | 2018

Cationic olefin complexes of platinum(II): Aspects of availability and reactivity

Michele Benedetti; Carmen R. Barone; Sara de Pinto; Federica De Castro; Giovanni Natile; Francesco P. Fanizzi

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