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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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Facile Preparation of Monolithic LiFePO4/Carbon Composites with Well-Defined Macropores for Li-ion he crystallization of LiFePO. from the green bodies during the calcination has also been investigated by thermal analysis, X-ray diffraction, and Raman scattering. In addition, electrochemical properties of the resultant LiFePO./carbon composites were examined by the charge–discharge test.
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2190-5053 monoliths based on various chemical compositions (organic, This thesis focuses on porous monolithic materials that are not in the forms of particles, fibers, or films. In particular, the synthetic strategy of porous monolithic materials via the sol–gel method accompanied by phase separation, which
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Application of Hierarchically Porous Titania Monoliths to Chromatographic Separation Media,sist of anatase crystallites with the typical specific surface area of more than 200 m. g.. The resultant monolithic titania column calcined at 200 and 400 °C exhibited a good separation performance for organophosphates as well as for polar benzene derivatives in the normal–phase mode.
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Pore Formation in Poly(divinylbenzene) Networks Derived from Organotellurium-Mediated Living Radicamed by organotellurium-mediated living radical polymerization (TERP). The living polymerization reaction of DVB with the coexistence of a non-reactive polymeric agent, poly(dimethylsiloxane) (PDMS), in a solvent, 1,3,5-trimethylbenzene (TMB) resulted in polymerization-induced phase separation (spino
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Novel Monolithic Capillary Column with Well-Defined Macropores Based on Poly(styrene-co-divinylbenzmediated living radical polymerization. The well-defined co-continuous macroporous structure can be obtained by polymerization-induced spinodal decomposition, and the pore structures are controlled by adjusting the starting composition. The effects of the addition of styrene on the pore characterist
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