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Titlebook: Studies on Porous Monolithic Materials Prepared via Sol–Gel Processes; George Hasegawa Book 2013 Springer Japan 2013 Carbon Materials.LiFe

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George Hasegawastituten angebotenen Leistungsspektrums wurden diverse Versuche unternommen, die vielfôltigen bankbetrleblichen Leistungsarten auf einige wenige Grundformen zurückzuführen. Das bekannteste und in der Praxis am häufigsten verwendete Systematisierungsschema unterscheidet zwischen Aktiv-, Passiv- und s
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George Hasegawastituten angebotenen Leistungsspektrums wurden diverse Versuche unternommen, die vielfôltigen bankbetrleblichen Leistungsarten auf einige wenige Grundformen zurückzuführen. Das bekannteste und in der Praxis am häufigsten verwendete Systematisierungsschema unterscheidet zwischen Aktiv-, Passiv- und s
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Fabrication of Activated Carbon Monoliths with Well-Defined Macropores Derived from Sulfonated Polyvely high temperature, mesopores in the original skeletons as well as macropores are retained even after carbonization at 1,000 °C. The obtained carbon monoliths were subsequently activated by CO., which resulted in activated carbons. The specific surface area of the obtained activated carbons reached up to 2,360 m. g..
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,Arylene-Bridged Polysilsesquioxane Monoliths with Multi-Scale Porous Structure Prepared via Sol–Gelrovided mesopores with decreasing micropores owing to Ostwald ripening. The difference of the tailored mesopore sizes in the two arylene-bridged polysilsesquioxane monoliths has been investigated by nitrogen physisorption measurement.
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Hierarchically Porous Carbon Monoliths with High Surface Area from Arylene-Bridged Polysilsesquioxacropores. The changes of the pore characteristics through the synthesis process by the nitrogen adsorption–desorption method and mercury porosimetry. In particular, the growth of silica phase in carbon/silica composites at different temperatures has been characterized by the micropore analysis using the Horváth–Kawazoe method.
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General Introduction,s is still hard to be achieved. In the present thesis, further development of the technique consisting of the sol–gel method and phase separation has been achieved with organic, inorganic, and organic–inorganic hybrid materials.
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Monolithic Electrode for Electric Double-Layer Capacitors Based on Macro/Meso/Microporous S-Containurrent density (103 F g. at 200 mV s. and 166 F g. at 10 A g.) owing to the hierarchical pore structure which allows an effective transport of ions, and to the high conductivity of the monolithic electrode.
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