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Mariagiulia Longo
Mariagiulia Longo
Post-doc researcher at ITM- CNR
Email verificata su itm.cnr.it
Titolo
Citata da
Citata da
Anno
Temperature dependence of gas permeation and diffusion in triptycene-based ultrapermeable polymers of intrinsic microporosity
A Fuoco, B Comesaña-Gándara, M Longo, E Esposito, M Monteleone, ...
ACS applied materials & interfaces 10 (42), 36475-36482, 2018
592018
Imputation of missing gas permeability data for polymer membranes using machine learning
Q Yuan, M Longo, AW Thornton, NB McKeown, B Comesana-Gandara, ...
Journal of membrane science 627, 119207, 2021
482021
Comparison of pure and mixed gas permeation of the highly fluorinated polymer of intrinsic microporosity PIM-2 under dry and humid conditions: Experiment and modelling
A Fuoco, B Satilmis, T Uyar, M Monteleone, E Esposito, C Muzzi, E Tocci, ...
Journal of Membrane Science 594, 117460, 2020
472020
Correlating gas permeability and Young’s modulus during the physical aging of polymers of intrinsic microporosity using atomic force microscopy
M Longo, MP De Santo, E Esposito, A Fuoco, M Monteleone, L Giorno, ...
Industrial & Engineering Chemistry Research 59 (12), 5381-5391, 2019
322019
Ultrapermeable polymers of intrinsic microporosity containing spirocyclic units with fused triptycenes
CG Bezzu, A Fuoco, E Esposito, M Monteleone, M Longo, JC Jansen, ...
Advanced Functional Materials 31 (37), 2104474, 2021
292021
Hydrogen permeation and separation characteristics of a thin Pd-Au/Al2O3 membrane: The effect of the intermediate layer absence
A Iulianelli, JC Jansen, E Esposito, M Longo, F Dalena, A Basile
Catalysis Today 330, 32-38, 2019
212019
Force spectroscopy determination of Young's modulus in mixed matrix membranes
M Longo, MP De Santo, E Esposito, A Fuoco, M Monteleone, L Giorno, ...
Polymer 156, 22-29, 2018
202018
Green H2 Production by Water Electrolysis Using Cation Exchange Membrane: Insights on Activation and Ohmic Polarization Phenomena
E Esposito, A Minotti, E Fontananova, M Longo, JC Jansen, A Figoli
Membranes 12 (1), 15, 2021
102021
Dibenzomethanopentacene‐based polymers of intrinsic microporosity for use in gas‐separation membranes
J Chen, M Longo, A Fuoco, E Esposito, M Monteleone, ...
Angewandte Chemie 135 (8), e202215250, 2023
92023
Thin Film Composite Membranes Based on the Polymer of Intrinsic Microporosity PIM-EA(Me2)-TB Blended with Matrimid®5218
M Longo, M Monteleone, E Esposito, A Fuoco, E Tocci, MC Ferrari, ...
Membranes 12 (9), 881, 2022
72022
The difference in performance and compatibility between crystalline and amorphous fillers in mixed matrix membranes for gas separation (MMMs)
M Carta, AR Antonangelo, JC Jansen, M Longo
Polymers 15 (13), 2951, 2023
52023
Matrimid® 5218/AO-PIM-1 blend membranes for gas separation
M Longo, B Comesaña-Gándara, M Monteleone, E Esposito, A Fuoco, ...
Journal of Membrane Science and Research 8 (3), 2022
22022
Gas Permeation through Mechanically Resistant Self‐Standing Membranes of a Neat Amorphous Organic Cage
R Mobili, S La Cognata, M Monteleone, M Longo, A Fuoco, SA Serapian, ...
Chemistry–A European Journal 29 (56), e202301437, 2023
12023
MOF-BASED MIXED MATRIX MEMBRANES FOR PROPENE/PROPANE SEPARATION
P Hajivand, M Monteleone, M Longo, TF Mastropietro, A Fuoco, ...
Book of Abstracts, 17, 2023
2023
Hollow Fiber Membranes for Gas Separation
E Esposito, M Monteleone, A Fuoco, M Longo, JC Jansen
Hollow Fibers and Nanofibers in Membrane Science, 309-374, 2022
2022
Study of physical, mechanical and transport properties of polymeric membranes for gas separation
M Longo, G Cipparrone, L Giorno, J Carolus Jansen
Università della Calabria, 2022
2022
Ultrapermeable Polymers of Intrinsic Microporosity that redefine the state-of-the-art for CO
A Fuoco, E Esposito, M Monteleone, M Longo, E Tocci, JC Jansen
CONFERENZA DI DIPARTIMENTO 2019, 139, 2019
2019
Correlating gas permeability and rigidity during the physical aging of polymers of intrinsic microporosity using atomic force microscopy
M Longo, MP De Santo, E Esposito, A Fuoco, M Monteleone, L Giorno, ...
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–18