Fiorella Lucarini
Associate Professor
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About
Fiorella Lucarini is an Associate Professor at HES-SO Fribourg, Switzerland. Her research primarily focuses on environmental monitoring of pollutants, including metals and organic compounds, as well as the analysis of per- and polyfluoroalkyl substances (PFAS) in aquatic organisms. Recent publications highlight her work on the implications of chemical exposure in food products and the development of advanced materials for hydrogen generation and bioimaging applications.
Articles (16)
Simultaneous Quantification of 16 Bisphenol Analogues in Food Matrices
Exposure to bisphenol analogues can occur in several ways throughout the food production chain, with their presence at higher concentrations representing a risk to human health. This study aimed to develop effective analytical methods to simultaneously quantify BPA and fifteen bisphenol analogues (i.e., bisphenol AF, bisphenol AP, bisphenol B, bisphenol BP, bisphenol C, bisphenol E, bisphenol F, bisphenol G, bisphenol M, bisphenol P, bisphenol PH, bisphenol S, bisphenol Z, bisphenol TMC, and tetramethyl bisphenol F) present in canned foods and beverages. Samples of foods and beverages available in the Swiss and EU markets (n = 22), including canned pineapples, ravioli, and beer, were prepared and analyzed using QuEChERS GC-MS. The quantification method was compared to a QuEChERS LC-MS/MS analysis. This allowed for the selective and efficient simultaneous quantitative analysis of bisphenol analogues. Quantities of these analogues were present in 20 of the 22 samples tested, with the most frequent analytes at higher concentrations: BPA and BPS were discovered in 78% and 48% of cases, respectively. The study demonstrates the robustness of QuEChERS GC-MS for determining low quantities of bisphenol analogues in canned foods. However, further studies are necessary to achieve full knowledge of the extent of bisphenol contamination in the food production chain and its associated toxicity.
Year:
2023
Electro- and photochemical H<sub>2</sub> generation by Co(<scp>ii</scp>) polypyridyl-based catalysts bearing <i>ortho</i>-substituted pyridines
Different proton-relay groups in hexadentate polypyridyl cobalt complexes induce distinct efficiencies and mechanisms in photo- and electrochemical H 2 generation.
Year:
2023
Collaborators (10)
Davide Staedler
University of Lausanne
R. Le Dantec
Université Savoie Mont-Blanc
Mirco NATALI
Associate Professor
University of Ferrara
Alessandro Ceschi
Professor
University of Applied Sciences of Southern Switzerland
Ileana Jelescu
Assistant Professor
University of Lausanne
Yannick Mugnier
Assistant Professor
Université Savoie Mont-Blanc
Marco Marazzi
Assistant Professor
Universidad de Alcalá
Albert Ruggi
University of Fribourg
Marie-Christine Broillet
University of Lausanne
Luigi Bonacina
Associate Professor
University of Geneva

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