Alessandra DE LORENZI

Position
Researcher
Telephone
041 234 8610 / Lab. 8944
E-mail
delorenz@unive.it
Scientific sector (SSD)
Chimica fisica [CHEM-02/A]
Website
www.unive.it/people/delorenz (personal record)
Office
Department of Molecular Sciences and Nanosystems
Website: https://www.unive.it/dep.dsmn
Where: Campus scientifico via Torino
Room: office 214 (Epsilon building, 2nd floor) / research lab 208 (Epsilon building, 2nd floor)
Sicurezza
Preposto di Laboratorio
Responsabile dell’Attività di Didattica e Ricerca in Laboratorio (RDRL)

Lamuraglia R.; Campostrini A.; Ghedini E.; De Lorenzi Pezzolo A.; Di Michele A.; Franceschin G.; Menegazzo F.; Signoretto M.; Traviglia A. A New Green Coating for the Protection of Frescoes: From the Synthesis to the Performances Evaluation in COATINGS, vol. 13, pp. 277 (ISSN 2079-6412)
DOI 2023, Journal Article - ARCA card: 10278/5016981


Pietropolli Charmet, A; Stoppa, P; De Lorenzi, A; Melosso, M; Achilli, A; Dore, L; Puzzarini, C; Cane, E; Tamassia, F Computational, rotational and ro-vibrational experimental investigation of monodeuterated chloromethane in JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, vol. 305, pp. 108624 (ISSN 0022-4073)
DOI 2023, Journal Article - ARCA card: 10278/5026600


De Lorenzi Pezzolo, A; Dal Fabbro, A; Alterio, A Spectroscopic and chemometric characterization of green earth pigments employed by ancient Romans in the wall decoration of buildings in the X Regio (Venetia et Histria) in SPECTROSCOPY LETTERS, vol. 56, pp. 129-146 (ISSN 0038-7010)
DOI 2023, Journal Article - ARCA card: 10278/5036642


Stoppa P.; Pietropolli Charmet A.; De Lorenzi A.; Tamassia F.; Melosso M.; Cane E.; Dore L.; Puzzarini C. High resolution FTIR study of the ν5, ν6, and ν9 fundamental bands of CH2D37Cl in JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, vol. 270, pp. 107719 (ISSN 0022-4073)
DOI 2021, Journal Article - ARCA card: 10278/3746950


Stoppa, P.*; De Lorenzi, A.; Pietropolli Charmet, A.; Giorgianni, S.; Tasinato, N.; Gambi, A. FTIR spectrum of vinyl fluoride near 3.6 μm: rovibrational analysis of the ν4+ν7band and modelling Coriolis resonances in a seven-level polyad in MOLECULAR PHYSICS, vol. 116, pp. 3487-3494 (ISSN 0026-8976)
DOI - URL correlato 2018, Journal Article - ARCA card: 10278/3703149