Produzione Scientifica
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Cu-Mn-Co oxides as protective materials in SOFC technology: The effect of chemical composition on mechanochemical synthesis, sintering behaviour, thermal expansion and electrical conductivity,
, Journal of the European Ceramic Society, Volume 37, Number 2, p.661-669, (2017)
The effect of chemical composition on high temperature behaviour of Fe and Cu doped Mn-Co spinels,
, Ceramics International, Volume 43, Number 2, p.2829-2835, (2017)
Investigation of the effects of mechanochemical treatment on NaAlH4 based anode materials for Li-ion batteries,
, Journal of the Electrochemical Society, Volume 163, Number 13, p.A2628-A2635, (2016)
Lightweight borohydrides electro-activity in lithium cells,
, Energies, Volume 9, Number 4, (2016)
Mechanochemical Processing of Mn and Co Oxides: An Alternative Way to Synthesize Mixed Spinels for Protective Coating,
, Journal of the American Ceramic Society, Volume 99, Number 1, p.308-314, (2016)
Electrochemical activity of lightweight borohydrides in lithium cells,
, 2015 IEEE 15th International Conference on Environment and Electrical Engineering, EEEIC 2015 - Conference Proceedings, p.1827-1832, (2015)
H2 thermal desorption and hydride conversion reactions in Li cells of TiH2/C amorphous nanocomposites,
, Journal of Alloys and Compounds, Volume 645, Number S1, p.S46-S50, (2015)
Lithium Alanates as Negative Electrodes in Lithium-Ion Batteries,
, ChemElectroChem, Volume 2, Number 6, p.877-886, (2015)
Origin of the Voltage Hysteresis of MgH2 Electrodes in Lithium Batteries,
, Journal of Physical Chemistry C, Volume 119, Number 30, p.17044-17052, (2015)
Protective coating from manganese cobalt oxide powders obtained by high energy ball milling: Materials characterization and cell environment testing,
, ECS Transactions, Volume 68, Number 1, p.2671-2678, (2015)
Reactivity of Sodium Alanates in Lithium Batteries,
, Journal of Physical Chemistry C, Volume 119, Number 52, p.28766-28775, (2015)
Insights about the irreversible capacity of LiNi0.5Mn 1.5O4 cathode materials in lithium batteries,
, Electrochimica Acta, Volume 106, p.483-493, (2013)
Mechanochemical synthesis of manganese cobalt spinel as interconnector protective coating material. First experimental findings.,
, ECS Transactions, Volume 57, Number 1, p.2295-2299, (2013)
Mixtures of ionic liquid-Alkylcarbonates as electrolytes for safe lithium-ion batteries,
, Journal of Power Sources, Volume 227, p.8-14, (2013)
A structural, spectroscopic and electrochemical study of a lithium ion conducting Li10GeP2S12 solid electrolyte,
, Journal of Power Sources, Volume 229, p.117-122, (2013)
Erratum: Magnesium hydride as a high capacity negative electrode for lithium ion batteries (Journal of Materials Chemistry (2012) 22 (14531-14537) DOI: 10.1039/C2JM31827J),
, Journal of Materials Chemistry, Volume 22, Number 48, p.25495, (2012)
In-situ X-ray diffraction study of the Li-alloying electrochemical process in a tin-carbon nanocomposite electrode,
, Nanoscience and Nanotechnology Letters, Volume 4, Number 2, p.132-135, (2012)
Magnesium hydride as a high capacity negative electrode for lithium ion batteries,
, Journal of Materials Chemistry, Volume 22, Number 29, p.14531-14537, (2012)
Sol-gel synthesis and electrochemical characterization of Mg-/Zr-doped LiCoO2 cathodes for Li-ion batteries,
, Journal of Power Sources, Volume 197, p.276-284, (2012)
Dechlorination of trichloroethene in a continuous-flow bioelectrochemical reactor: Effect of cathode potential on rate, selectivity, and electron transfer mechanisms,
, Environmental Science and Technology, Volume 45, Number 19, p.8444-8451, (2011)
Mitigation of the irreversible capacity and electrolyte decomposition in a LiNi0.5Mn1.5O4/nano-TiO2 Li-ion battery,
, Journal of Power Sources, Volume 196, Number 22, p.9792-9799, (2011)
Characterization of an electro-active biocathode capable of dechlorinating trichloroethene and cis-dichloroethene to ethene,
, Biosensors and Bioelectronics, Volume 25, Number 7, p.1796-1802, (2010)
Decomposition of ethylene carbonate on electrodeposited metal thin film anode,
, Journal of Power Sources, Volume 195, Number 7, p.2036-2043, (2010)
Determination of the safety level of an advanced lithium ion battery having a nanostructured Sn-C anode, a high voltage LiNi0.5Mn1.5O4 cathode, and a polyvinylidene fluoride-based gel electrolyte,
, Electrochimica Acta, Volume 55, Number 13, p.4194-4200, (2010)
Compatibility of the Py24TFSI-LiTFSI ionic liquid solution with Li4Ti5O12 and LiFePO4 lithium ion battery electrodes,
, Journal of Power Sources, Volume 194, Number 1, p.182-189, (2009)