Search Results - "Penazzi, N"
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1
Hydrothermal synthesis of high surface LiFePO4 powders as cathode for Li-ion cells
Published in Journal of power sources (01-09-2006)“…An easy, quick and low cost hydrothermal synthesis was developed to prepare high surface area phospho-olivine LiFePO4 powders to be used as cathode material…”
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Journal Article -
2
Microstructure evolution and capacity: Comparison between 2090-T8 aluminium alloy and pure aluminium anodes
Published in Journal of alloys and compounds (15-12-2017)“…The paper offers a contribution towards solving the problem of the fast capacity decay of pure aluminium anodes for lithium batteries. To this aim, an analysis…”
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3
New eco-friendly low-cost binders for Li-ion anodes
Published in Journal of solid state electrochemistry (01-11-2017)“…In the production of commercial Li-ion batteries, the active materials slurries are generally prepared using polyvinylidene fluoride (PVdF) as binder because…”
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4
Cycling profile of MgAl2O4-incorporated composite electrolytes composed of PEO and LiPF6 for lithium polymer batteries
Published in Electrochimica acta (15-02-2013)“…Magnesium aluminate (MgAl2O4)-incorporated poly(ethylene oxide) (PEO)–lithium hexafluorophosphate (LiPF6) based composite polymer electrolyte (CPE) membranes…”
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5
Mesoporous Co3O4 nanocrystals as an effective electro-catalyst for highly reversible Li―O2 batteries
Published in Journal of power sources (25-12-2014)Get full text
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6
Microfibrillated cellulose as reinforcement for Li-ion battery polymer electrolytes with excellent mechanical stability
Published in Journal of power sources (01-12-2011)“…► UV-cured methacrylic-based composite gel-polymer electrolyte membranes for Li-batteries. ► Excellent mechanical stability by reinforcement with…”
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7
Surfactant-assisted mild solvothermal synthesis of nanostructured LiFePO4/C cathodes evidencing ultrafast rate capability
Published in Electrochimica acta (20-02-2015)“…•Nanostructured LiFePO4/C by surfactant assisted solvothermal synthesis.•Novel and simple preparation method, with no critical parameters.•Noticeable…”
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8
Anodic Materials for Lithium-ion Batteries: TiO2-rGO Composites for High Power Applications
Published in Electrochimica acta (10-03-2017)“…[Display omitted] Titanium dioxide/reduced graphene oxide (TiO2-rGO) composites were synthesized at different loadings of carbonaceous phase, characterized and…”
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9
UV-cured polymer electrolytes encompassing hydrophobic room temperature ionic liquid for lithium batteries
Published in Journal of power sources (15-03-2010)“…We demonstrate herewith the application of in situ one-shot free radical photo-polymerisation (UV-curing) process to incorporate room temperature ionic liquids…”
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10
Methacrylic-based solid polymer electrolyte membranes for lithium-based batteries by a rapid UV-curing process
Published in Reactive & functional polymers (01-04-2011)“…The present communication describes solid polymer electrolyte (SPE) membranes prepared by the direct free radical photo-polymerisation (UV-curing) of…”
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11
UV-curable siloxane-acrylate gel-copolymer electrolytes for lithium-based battery applications
Published in Electrochimica acta (25-01-2010)“…Thermo-set membranes prepared by free-radical photo-polymerisation (UV-curing) could be an interesting alternative to the existing Li-ion battery polymer…”
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Journal Article Conference Proceeding -
12
Pilot-scale elaboration of graphite/microfibrillated cellulose anodes for Li-ion batteries by spray deposition on a forming paper sheet
Published in Chemical engineering journal (Lausanne, Switzerland : 1996) (01-05-2014)“…•Processing of Li ion cell electrodes on a pilot paper machine by spray coating.•Use of microfibrillated cellulose in the formulation of the electrode…”
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13
New electrolyte membranes for Li-based cells: Methacrylic polymers encompassing pyrrolidinium-based ionic liquid by single step photo-polymerisation
Published in Journal of membrane science (15-12-2012)“…We demonstrate herein the application of an in situ single-step free radical photo-polymerisation process to incorporate room temperature ionic liquids (RTILs)…”
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14
Correction to: New eco-friendly low-cost binders for Li-ion anodes
Published in Journal of solid state electrochemistry (19-07-2019)“…The article New eco-friendly low-cost binders for Li-ion anodes, written by D. Versaci, R. Nasi, U. Zubair, J. Amici, M. Sgroi, M. A. Dumitrescu, C. Francia,…”
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15
Novel cellulose reinforcement for polymer electrolyte membranes with outstanding mechanical properties
Published in Electrochimica acta (15-12-2011)“…► UV-cured methacrylic-based composite gel-polymer electrolyte membranes for rechargeable lithium batteries. ► Excellent mechanical stability by reinforcement…”
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Journal Article Conference Proceeding -
16
UV-cured methacrylic membranes as novel gel–polymer electrolyte for Li-ion batteries
Published in Journal of power sources (01-04-2008)“…In this paper, we report the synthesis and characterisation of novel methacrylic based polymer electrolyte membranes for lithium batteries. The method adopted…”
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Journal Article Conference Proceeding -
17
α-Fe2O3 lithium battery anodes by nanocasting strategy from ordered 2D and 3D templates
Published in Journal of alloys and compounds (05-12-2014)“…•Nanosized α-Fe2O3 lithium battery conversion anodes with tunable morphology.•Nanocasting technique using MCM-41 and MCM-48 silica moulds is…”
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Journal Article Conference Proceeding -
18
FePO4 nanoparticles supported on mesoporous SBA-15 : Interesting cathode materials for Li-ion cells
Published in Journal of power sources (06-12-2007)Get full text
Conference Proceeding Journal Article -
19
Highly ionic conducting methacrylic-based gel-polymer electrolytes by UV-curing technique
Published in Journal of applied electrochemistry (01-11-2009)“…Today, special interest is focused on polymer systems showing high ionic conductivity at ambient and/or sub ambient temperatures, since they find unique…”
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20
Novel multiphase electrode/electrolyte composites for next generation of flexible polymeric Li-ion cells
Published in Journal of applied electrochemistry (01-02-2013)“…An innovative multiphase electrode/electrolyte composite is proposed here, which is obtained by a fast, versatile and easily scalable UV-induced free-radical…”
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