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Maurizio Peruzzini

Researcher at National Research Council

Publications -  476
Citations -  14223

Maurizio Peruzzini is an academic researcher from National Research Council. The author has contributed to research in topics: Catalysis & Triphos. The author has an hindex of 55, co-authored 461 publications receiving 12831 citations. Previous affiliations of Maurizio Peruzzini include University of Florence & Sapienza University of Rome.

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Coordination chemistry of 1,3,5-triaza-7-phosphaadamantane (PTA): Transition metal complexes and related catalytic, medicinal and photoluminescent applications

TL;DR: In this article, the synthesis and structural properties of PTA and derivatives, their transition metal complexes, catalytic, medicinal and photoluminescence uses are reviewed and compared.
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P4 Activation by Late-Transition Metal Complexes†‡

TL;DR: The coordination chemistry of white phosphorus is nowadays a mature discipline, which during the last four decades has reached a deep understanding of the mechanisms governing the metal-mediated activation of this unique and highly reactive molecule.
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Ammonia–Borane and Amine–Borane Dehydrogenation Mediated by Complex Metal Hydrides

TL;DR: This review is a comprehensive survey of the last 10 years of research on ammonia-borane and amine-boranes dehydrogenation mediated by complex metal hydrides (CMHs), within the broader context of chemical hydrogen storage.
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CO2 absorption by aqueous NH3 solutions: speciation of ammonium carbamate, bicarbonate and carbonate by a 13C NMR study

TL;DR: In this paper, a method has been developed to correlate the chemical shift of this carbon resonance to the ratio of the two anionic species, and the relative amount of HCO3−, CO32−, and NH2CO2− in solution have been correlated to the molar ratio between free ammonia in solution and absorbed CO2.
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Coordination chemistry of 1,3,5-triaza-7-phosphaadamantane (PTA) and derivatives. Part II. The quest for tailored ligands, complexes and related applications

TL;DR: In this paper, a review of the recent developments on the tailored synthetic modifications and related coordination chemistry of the water-soluble cage-like aminophosphine ligand 1,3,5-triaza-7-phosphatricyclo-[3.3.1]decane (PTA) is presented.