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Dive into the research topics where E. E. Horopanitis is active.

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Featured researches published by E. E. Horopanitis.


Ionics | 2003

Electrical properties of lithiated boron oxide fast-ion conducting glasses

E. E. Horopanitis; G. Perentzis; E. Pavlidou; L. Papadimitriou

Lithiated boron oxide glasses of the family xLi2O-B2O3, with x ranging from 1.0 to 4.5, were prepared by melting at high temperatures and shaped in the form of slabs. The glasses’ properties were evaluated by Complex Impedance Spectroscopy and Scanning Electron Microscopy techniques. The variation of lithium-ion conductivity at room temperature as a function of the glasses’ lithium content is found to exhibit a maximum at a molar ratio of x=3.5. This maximum in the ionic conductivity is correlated to the formation of crystalline regions in the vitreous structure of the material as the lithium concentration is increased.


Materials Science and Engineering B-advanced Functional Solid-state Materials | 2004

Thermally activated ionic conduction in LiNbO3 electrolyte thin films

G. Perentzis; E. E. Horopanitis; E. Pavlidou; L. Papadimitriou


Journal of Non-crystalline Solids | 2008

Correlation between structural and electrical properties of heavily lithiated boron oxide solid electrolytes

E. E. Horopanitis; G. Perentzis; A. Beck; L. Guczi; G. Peto; L. Papadimitriou


Journal of Solid State Electrochemistry | 2007

Impedance modelling of two-phase solid-state ionic conductors. Part I—theoretical model and computer simulations

E. E. Horopanitis; G. Perentzis; L. Papadimitriou


Ionics | 2006

Effect of multivalent cation substitution on the capacity fading of lithium manganese spinel cathodes

G. Perentzis; E. E. Horopanitis; L. Papadimitriou


Journal of Solid State Electrochemistry | 2003

Synthesis and electrochemical study of Li-Mn-Ni-O cathodes for lithium battery applications

G. Perentzis; E. E. Horopanitis; I. Samaras; S. Kokkou; L. Papadimitriou


Journal of Non-crystalline Solids | 2008

Ion transport through LiCoO2/(Li2O)x (B2O3) thin-film bi-layers

E. E. Horopanitis; G. Perentzis; E. Pavlidou; L. Papadimitriou


Journal of Solid State Electrochemistry | 2007

Impedance modelling of two-phase solid-state ionic conductors. Part II—application to high-lithium-content xLi2O–B2O3 fast-ion conducting glasses

E. E. Horopanitis; G. Perentzis; L. Papadimitriou


Materials Science and Engineering B-advanced Functional Solid-state Materials | 2009

Identification of the presence of crystalline phase in lithiated boron oxide ionic glass conductors

E. E. Horopanitis; G. Perentzis; A. Beck; L. Guczi; G. Peto; L. Papadimitriou


Physica Status Solidi (c) | 2008

Influence of different substrates on the ionic conduction in LiCoO2/LiNbO3 thin-film bi-layers

E. E. Horopanitis; G. Perentzis; L. Papadimitriou

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G. Perentzis

Aristotle University of Thessaloniki

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L. Papadimitriou

Aristotle University of Thessaloniki

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E. Pavlidou

Aristotle University of Thessaloniki

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I. Samaras

Aristotle University of Thessaloniki

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Panagiotis Karagiannidis

Aristotle University of Thessaloniki

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S. Kokkou

Aristotle University of Thessaloniki

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