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osvaldo.lanzalunga@uniroma1.it
Osvaldo Lanzalunga
Professore Ordinario
Struttura:
DIPARTIMENTO DI CHIMICA
E-mail:
osvaldo.lanzalunga@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
Proximity Effects on the Reactivity of a Nonheme Iron (IV) Oxo Complex in C−H Oxidation
ANGEWANDTE CHEMIE
2024
Coupled X-ray Absorption/UV-vis Monitoring of a Prototypical Oscillating Reaction
THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS
2024
Transition Metal Catalysts Bearing Multidentate Ligands for Efficient and Environmental Benign Oxidations by H 2 O 2
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY
2023
Oxidations of aromatic sulfides promoted by the phthalimide N-oxyl radical (PINO)
JOURNAL OF SULFUR CHEMISTRY
2023
Kinetic and Product Study of the S-oxidation vs HAT Chemoselectivity in Reactions Promoted by Nonheme Iron(IV)-oxo Complex/NHPI Mediator System
EUROPEAN JOURNAL OF ORGANIC CHEMISTRY
2023
Site-selective methylene C–H oxidation of an alkyl diamine enabled by supramolecular recognition using a bioinspired manganese catalyst
FARADAY DISCUSSIONS
2023
Site-selective methylene C-H oxidation of an alkyl diamine enabled by supramolecular recognition using a bioinspired manganese catalyst
FARADAY DISCUSSIONS
2023
Combining X-ray Absorption and NMR spectroscopies to investigate a chemical reaction in solution
RADIATION PHYSICS AND CHEMISTRY
2023
Signal Transduction Allows Temporal Control of the Potential of a Concentration Cell Driven by the Decarboxylation of an Activated Carboxylic Acid
2023
Following a Silent Metal Ion: A Combined X-ray Absorption and Nuclear Magnetic Resonance Spectroscopic Study of the Zn2+ Cation Dissipative Translocation between Two Different Ligands
THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS
2022
Direct structural and mechanistic insights into fast bimolecular chemical reactions in solution through a coupled XAS/UV-Vis multivariate statistical analysis
DALTON TRANSACTIONS
2021
Insight into the chemoselective aromatic vs. side-chain hydroxylation of alkylaromatics with H2O2 catalyzed by a non-heme imine-based iron complex
CATALYSIS SCIENCE & TECHNOLOGY
2021
Activation of C-H bonds by a nonheme iron(iv)-oxo complex: Mechanistic evidence through a coupled EDXAS/UV-Vis multivariate analysis
PHYSICAL CHEMISTRY CHEMICAL PHYSICS
2021
Increasing the steric hindrance around the catalytic core of a self-assembled imine-based non-heme iron catalyst for C-H oxidation
RSC ADVANCES
2021
Competition between Cα-S and Cα-Cβ bond cleavage in β-Hydroxysulfoxides cation radicals generated by photoinduced electron transfer
PHOTOCHEMISTRY AND PHOTOBIOLOGY
2021
New horizons for catalysis disclosed by supramolecular chemistry
CHEMICAL SOCIETY REVIEWS
2021
Change of Selectivity in C-H Functionalization Promoted by Nonheme Iron(IV)-oxo Complexes by the Effect of the N-hydroxyphthalimide HAT Mediator
ACS OMEGA
2021
Two Faces of the Same Coin: Coupling X-Ray Absorption and NMR Spectroscopies to Investigate the Exchange Reaction Between Prototypical Cu Coordination Complexes
CHEMISTRY-A EUROPEAN JOURNAL
2021
Insights into the Structure of Reaction Intermediates Through Coupled X-ray Absorption/UV-Vis Spectroscopy
Springer Proceedings in Physics
2021
Predictable selectivity in remote C-H oxidation of steroids: analysis of substrate binding mode
ANGEWANDTE CHEMIE. INTERNATIONAL EDITION
2020
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ERC
PE5_22
PE5_23
KET
Life-science technologies & biotechnologies
Keywords
radicals
radical cation
C-H oxidation
Iron catalyzed oxidations
biomimetic complexes
N-hydroxyphthalimide
Progetti di Ricerca
NEW SUPRAMOLECULAR CATALYSTS FOR SELECTIVE C-H BOND FUNCTIONALIZATION BY HYDROGEN ATOM TRANSFER (HAT) BASED OXIDATIVE PROCESSES
Ossidazioni selettive di composti organici promosse da complessi di ferro-noneme in presenza di N-idrossi mediatori
Non-heme iron complexes as efficient and versatile catalysts of oxidative processes
Effetti Strutturali e del Mezzo sui Processi di Trasferimento di Atomo di Idrogeno (HAT) Promossi da Amminossil Radicali
Gruppi di ricerca
SupRa Lab Rome
Laboratori di ricerca
Laboratorio di Processi Radicalici e di Trasferimento Elettronico
© Università degli Studi di Roma "La Sapienza" - Piazzale Aldo Moro 5, 00185 Roma