Bruno Scrosati
Affiliations: | 1965-1966 | Chemistry | University of Illinois, Urbana-Champaign, Urbana-Champaign, IL |
1966-1969 | Chemistry | Sapienza - Universita di Roma, Roma, Lazio, Italy | |
1980- | Chemistry | Sapienza - Universita di Roma, Roma, Lazio, Italy |
Area:
energy storage, batteries, lithium-airWebsite:
https://books.google.com/books?id=gliiDAAAQBAJ&pg=PA197&lpg=PA197&dq=%22Bruno+Scrosati%22+1969&source=bl&ots=MZVaew05A_&sig=6Or4Og89NL9C-l-abLd3n7gK9Gs&hl=en&sa=X&ved=0ahUKEwjPou_13abQAhWG7CYKHXVbDn0Q6AEIIDAB#v=onepage&q=%22Bruno%20Scrosati%22%201969&f=faGoogle:
"Bruno Scrosati"Parents
Sign in to add mentorFilipo Accascina | grad student | 1966-1969 | Sapienza - Universita di Roma |
Herbert August Laitinen | post-doc | 1965-1966 | UIUC (Chemistry Tree) |
Children
Sign in to add traineeStefano Passerini | grad student | 1989-1992 | Sapienza - Universita di Roma |
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Publications
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Fernicola A, Weise FC, Greenbaum SG, et al. (2020) Lithium-Ion-Conducting Electrolytes: From an Ionic Liquid to the Polymer Membrane. Journal of the Electrochemical Society. 156: A514-A520 |
Agostini M, Lim DH, Brutti S, et al. (2018) Free-standing 3D sponged nano-fibre electrodes for ultrahigh-rate energy storage devices. Acs Applied Materials & Interfaces |
Bertasi F, Pagot G, Vezzù K, et al. (2018) Exotic solid state ion conductor from fluorinated titanium oxide and molten metallic lithium Journal of Power Sources. 400: 16-22 |
Ulissi U, Elia GA, Jeong S, et al. (2017) Low-polarization lithium oxygen battery using N,N-diethyl-N-(2-methoxyethyl)-N-methylammonium bis(trifluoromethanesulphonyl) imide (DEMETFSI) ionic liquid electrolyte. Chemsuschem |
Agostini M, Lim DH, Sadd M, et al. (2017) Stabilizing the performance of high-capacity sulfur composite electrodes by a novel gel polymer electrolyte configuration. Chemsuschem |
Agostini M, Brutti S, Navarra MA, et al. (2017) A high-power and fast charging Li-ion battery with outstanding cycle-life. Scientific Reports. 7: 1104 |
Navarra MA, Fujimura K, Sgambetterra M, et al. (2017) New morpholinium- and piperidinium-based ionic liquids, functionalized with ethoxyethyl-side chains, as electrolyte components in lithium and lithium-ion batteries. Chemsuschem |
Sun H, Varzi A, Pellegrini V, et al. (2017) How much does size really matter? Exploring the limits of graphene as Li ion battery anode material Solid State Communications. 251: 88-93 |
Carbone L, Verrelli R, Gobet M, et al. (2016) Insight on the Li2S electrochemical process in a composite configuration electrode. New Journal of Chemistry = Nouveau Journal De Chimie. 40: 2935-2943 |
Elia GA, Ulissi U, Mueller F, et al. (2016) A Long-Life Lithium Ion Battery with Enhanced Electrode/Electrolyte Interface by Using an Ionic Liquid Solution. Chemistry (Weinheim An Der Bergstrasse, Germany) |