National Repository of Grey Literature 21 records found  previous11 - 20next  jump to record: Search took 0.00 seconds. 
Electrochemistry at the interface between two electrolyte solutions – a tool to modelling of biological cell membranes
Mareček, Vladimír ; Štulík, K.
It is demonstrated that the phospholipid modified interfaces can serve as simple models for certain interactions occurring at biological cell membranes. One of the most important aspects of such studies is the formation and behaviour of a phospholipid membrane at the interface. A five-step mechanism has been proposed for the lecithin adsorption/desorption process, involving sorption, acid-base and association/dissociation interactions.
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.
Stabilita alpha-Ni(OH)2 v závislosti na koncentraci elektrolytu
Vrbický, J. ; Vondrák, Jiří ; Sedlaříková, M.
Alpha nickel hydroxide is stable in normal conditions, but in alkaline electrolytes is unstable.
Elektrolyty pro elektrochemické superkondenzátory
Přikryl, M. ; Kocian, Martin ; Sedlaříková, M. ; Vondrák, Jiří ; Hajátková, E. ; Mohelníková, J.
These components have wide applications in the presents industrial world because of their properties.
Dvojvrstva na uhlíku v aprotických elektrolytech
Vondrák, Jiří ; Sedlaříková, M. ; Velická, Jana ; Kocian, Martin ; Špachman, V. ; Klápště, Břetislav
As carbonaceous materials we started with glassy carbon electrodes and continued to use variety pf carbon black powders, carbon nanotubes and chemically modified graphite in powderized form.
Byly sestrojeny hybridní elektrochromní prvky s různými elektrolyty a studovány jeho optické a elektrochemické vlastnosti
Krejza, O. ; Reiter, Jakub
Hybride electrochromic devices were assembled with different electrolytes and their optical and electrochemical properties were studied.
New reference electrode based on PMMA polymer electrolytes
Reiter, Jakub ; Vondrák, Jiří ; Opekar, F. ; Sedlaříková, M. ; Velická, Jana ; Klápště, Břetislav
The research on the field of polymer gel electrolytes is at the border between solid and liquid phase.
Gel Polymer Electrolytes
Nováček, T. ; Sedlaříková, M. ; Vondrák, Jiří
Gel polymer electrolytes belong to the most progressive components in the technology of lithium batteries, electrochromic windows, and some other devices.
Electrochemistry in the Medium of PMMA Gel Electrolytes
Reiter, Jakub ; Vondrák, Jiří ; Sedlaříková, M. ; Velická, Jana ; Nečesal, P.
Polymer gel electrolytes are used in the electrochemistry of lithium batteries and electrochromic devices. Their investigation started in our department in 1997, when first results were published on the International Seminar on Inclusion Compounds. Investigation of electric conductivity showed, that the specific conductivity of a 0.25 M LiBF4 solution was not lowered by an addition of solid PMMA polymer more than by 40-50%. We have developed a new method preparation of gel polymer electrolyte: after a mixung of anhydrous perchlorate solution in propylencarbonate (lithium, sodium, cadmium and other sals) with monomeric and oligomeric metylmetacrylate we hawe obtained an elastic and homogenous polymer with good optical properties.
Gel Polymer Electrolytes Based on PMMA
Vondrák, Jiří ; Klápště, Břetislav ; Velická, Jana ; Reiter, Jakub
Polymer gel electrolytes based on polymethylmethacrylateand aprotic solutions of metallic salts were prepared.Their electric conductivity decreased in the series ofsalts Mg>Li.>Zn>Na. The lower mobility of smaller ionsis explained by their stronger interaction with polymernetwork present in the gel.

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