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  • There was studied a process of self-organization of mineral particles in gel-like phases of cellulosic derivatives during solvent (water) evaporation. As an inorganic compounds were chosen: AgX (X = Cl, Br, I), ZnO, Fe2O3, and the other particular systems. It has been found that the molecular weight and the internal viscosity of the gel strongly influence the process, as well as the temperature and starting conditions inside and outside of the system. There was observed that the self-organization of mineral particles is leading to two types of aggregates, at least. First of them with the strictly simple structure (cubic type) and the second with a hexagonal one. The second one has been organized to high ordered space structures (see figure 1). The products of the processes were examined by optical microscopy, electron microscopy, termogravimetry and the image analysis. A suitable computer software was applied to the image analysis in the studied cases.
  • There was studied a process of self-organization of mineral particles in gel-like phases of cellulosic derivatives during solvent (water) evaporation. As an inorganic compounds were chosen: AgX (X = Cl, Br, I), ZnO, Fe2O3, and the other particular systems. It has been found that the molecular weight and the internal viscosity of the gel strongly influence the process, as well as the temperature and starting conditions inside and outside of the system. There was observed that the self-organization of mineral particles is leading to two types of aggregates, at least. First of them with the strictly simple structure (cubic type) and the second with a hexagonal one. The second one has been organized to high ordered space structures (see figure 1). The products of the processes were examined by optical microscopy, electron microscopy, termogravimetry and the image analysis. A suitable computer software was applied to the image analysis in the studied cases. (en)
  • Byl studován proces samoorganizace minerální částic v %22gelových%22 fázích celulózových derivatů během odpařování rozpouštědla (vody). Jako anorganické sloučeniny byly zvoleny AgX (X = Cl, Br, I), ZnO, Fe2O3. a další partikulární systémy. Bylo zjištěno že molekulární váha a vnitřní viskozita gelu silně ovlivňuje proces, stejně jako teplota a počáteční podmínky uvnitř a vně systému. Vznikající saooorganizované struktury minerálních částic vykazovaly dva typy agregátů (kubické a hexagonální). (cs)
Title
  • Experimental study of self-organization in gel phases of water-soluble cellulosic gels
  • Experimental study of self-organization in gel phases of water-soluble cellulosic gels (en)
  • Experimentální studium samoorganizace v gelových fázích vodorozpustných derivátů celulozy (cs)
skos:prefLabel
  • Experimental study of self-organization in gel phases of water-soluble cellulosic gels
  • Experimental study of self-organization in gel phases of water-soluble cellulosic gels (en)
  • Experimentální studium samoorganizace v gelových fázích vodorozpustných derivátů celulozy (cs)
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  • RIV/70883521:28110/06:63504766!RIV07-MSM-28110___
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  • 81
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  • Z(MSM7088352101)
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  • 475146
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  • RIV/70883521:28110/06:63504766
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  • self-organization; hydroxyethyl cellulose; Rayleigh-Benard instability (en)
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  • [6A108E80CDC7]
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  • Praha
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  • 45th Microsymposium of P.M.M %22Structure and Dynamics of Self-Organized Macromolecular Systems
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  • Lapčík, Lubomír
  • Urban, Pavel
  • Minařík, Antonín
  • Mráček, Aleš
  • Hrubá, Michaela
http://linked.open...n/vavai/riv/zamer
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  • Akademie věd České republiky
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  • 80-85009-52-8
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  • 28110
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