National Repository of Grey Literature 15 records found  previous11 - 15  jump to record: Search took 0.01 seconds. 
Přírodní grafit po oxidačním zpracování pro lithiové baterie
Makovička, J. ; Sedlaříková, M. ; Vondrák, Jiří
In the last decades,many kinds of carbon materials have been investigated as anode materials for Li-ion batteries. Among them, natural graphite appears as a promising candidate due to its advantages such as high capacity at low electrode potential relative to lithium metal.
Elektrolyty pro lithno-iontové baterie pracující při vyšších teplotách
Reiter, Jakub ; Dominko, R. ; Jakubec, Ivo ; Michálek, J.
Methacrylate-based polymer electrolytes with lithium perchlorate or lithium bis(oxalato)borate were prepared and studied as perspective materials for lithium-ion batteries operating at elevated temperatures (70 – 80 °C) and exibiting higher electrochemical and chemical stability towards oxidation. The accesible potential window on gold electrode was found to be 4.9 – 5.1 V vs. Li/Li+. The ionic conductivity at 70 °C is 1.9 – 2.4 mS/cm.
Mezoporézní nikl-oxid nikelnatý pro katalyzátory palivových článků
Barath, Peter ; Uhlířová, Tereza ; Reiter, Jakub
Nanostructured (mesoporous) nickel-nickel oxide was prepared from the medium of the lyotropic liquid crystals. The electrochemical properties of the material deposited in thin layers were studied, especially the hydrogen oxidation reaction. The catalyst exhibits remarkable catalytic activity.
Li+ a H+ vodivé polymerní elektrolyty s kovalentně vázanými anionty
Reiter, Jakub ; Michálek, Jiří ; Přádný, Martin ; Chmelíková, Dana ; Širc, Jakub
New single-ion conducting electrolytes based on methacrylates were prepared using direct, radically initiated polymerisation: copolymers of methacrylic acid (MA) or lithium methacrylate (LiMA) with 2-ethoxyethyl methacrylate (EOEMA) and poly(ethylene glycol) methyl ether methacrylate (EGMEMA) as pure cationically conducting Li+ or H+ electrolytes and covalently bonded carboxylic group. For the conductivity improvement, a set of electrolytes with embedded aprotic solvent (propylene carbonate PC or N,N-dimethylformamide DMF) was prepared.
Elektrochemické redoxní procesy polymerních elektrolytech na bázi methakrylátů – studie na mikroelektrodě
Nádherná, Martina ; Reiter, Jakub
In our recent project we have investigated electrochemical behaviour of ferrocene in liquid and polymer aprotic electrolytes using various electrochemical methods. The apparent diffusion coefficients were determined for propylene carbonate and poly(ethyl methacrylate)-propylene carbonate medium. Thank to optimised electrolyte composition, the polymerisation lowers the mobility of ferrocene only by 15 – 50 times contrary to previously studied PMMA-PC (Superacryl-based) electrolytes, where approx. three order decrease of diffusion coefficients was found.

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