most citedGlyme-based electrolytes: suitable solutions for next-generation lithium batteries

92 citations · 245 across the 7 of their papers we have counts for

collaborators

7 papers

cond-mat.mtrl-sci202235 cited

Synthesis and Characterization of a LiFe0.6Mn0.4PO4 Olivine Cathode for Application in a New Lithium Polymer Battery

Luca Minnetti, Vittorio Marangon, Jusef Hassoun

A LiFe0.6Mn0.4PO4 (LFMP) cathode exploiting the olivine structure is herein synthesized and characterized in terms of structure, morphology, and electrochemical features in a lithi…

cond-mat.mtrl-sci202292 cited

Glyme-based electrolytes: suitable solutions for next-generation lithium batteries

Daniele Di Lecce, Vittorio Marangon, Hun-Gi Jung +3

The concept of green in a battery involves the chemical nature of electrodes and electrolytes as well as the economic sustainability of the cell. Although these aspects are typical…

physics.app-ph202117 cited

Novel Lithium-Sulfur Polymer Battery Operating at Moderate Temperature

Vittorio Marangon, Daniele Di Lecce, Luca Minnetti +1

A safe lithium-sulfur (Li-S) battery employs a composite polymer electrolyte based on a poly(ethylene glycol) dimethyl ether (PEGDME) solid at room temperature. The electrolyte mem…

physics.chem-ph202137 cited

Degradation of Layered Oxide Cathode in a Sodium Battery: A Detailed Investigation by X-Ray Tomography at the Nanoscale

Daniele Di Lecce, Vittorio Marangon, Mark Isaacs +3

The degradation mechanism in a sodium cell of a layered Na0.48Al0.03Co0.18Ni0.18Mn0.47O2 (NCAM) cathode with P3/P2 structure is investigated by revealing the changes in microstruct…

physics.chem-ph202121 cited

Synthesis of a High-Capacity α-Fe2O3@C Conversion Anode and a High-Voltage LiNi0.5Mn1.5O4 Spinel Cathode and Their Combination in a Li-Ion Battery

Shuangying Wei, Daniele Di Lecce, Riccardo Messini D'Agostini +1

A Li-conversion alpha-Fe2O3@C nanocomposite anode and a high-voltage LiNi0.5Mn1.5O4 cathode are synthesized in parallel, characterized, and combined in a Li-ion battery. alpha-Fe2O…

physics.chem-ph202127 cited

A Stable High-Capacity Lithium-Ion Battery Using a Biomass-Derived Sulfur-Carbon Cathode and Lithiated Silicon Anode

Vittorio Marangon, Celia Hernández-Renter, Mara Olivares-Marín +4

A full lithium-ion-sulfur cell with a remarkable cycle life was achieved by combining an environmentally sustainable biomass-derived sulfur-carbon cathode and a pre-lithiated silic…