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Wang, Finite-Size Effects in Ferroelectric Solid-Solution BaxSr1-xTiO3,J. Phys. D: Appl. 32 (2010)546–551. com Keywords: Polymer, porous materials, energy storage, porous carbon Abstract: Nowadays, one of the research emphases in clean energy field is to apply porous polymer as energy storage media to capture and save abundant energy. Researches in this area focus on theoretical methods and syntheses of new materials. Researches on theoretical methods include investigations on mechanical strength, characteristic of heat and mass transfer, internal structure and hydrophilicity of materials using mathematical, physical and chemical methods.
Fig. 1 showed the reaction of epoxy and isocyanate to form the interpenetrating polymer network. 2 Preparation of PU/EP IPN rigid foams The optimum formula for preparing polyurethane foam was chosen through the orthogonal experiment, as shown in Table 1. 4 A series of PU/EP IPN spongy foams with different contents of epoxy resin were prepared by a simultaneous polymerization technique. The mass fraction of epoxy in the whole system was ranged of 10, 15, 20, 25, 30, and 40%. The procedure consisted of adding the desired amount of polyether polyol, dibutyltin dilaurate as catalyst, silicone oil L580 as foam stabilizer, water as foaming agent and epoxy resin dissolved in methylbenzene to obtain a mixture initially and then adding MDI.
5)TiO3 by the Laser Ablation Technique and Electrical Properties, J. Appl. 76 (2008)2999–3003.  C. S. Chern, S. Liang, Z. Shi, S. Yoon, A. Safari, P. Lu, B. H. Kear, B. Goodreau, T. Marks, and S. Hou, Heteroepitaxial Growth of Ba1-xSrxTiO3/YBa2Cu3O7-x by Plasma-Enhanced Metalorganic Chemical Vapor Deposition, Appl. Phys. Lett. 64 (2010) 3181–3183.  D. M. Tahan, A. Safari, and L. Klein, Preparation and Characterization of BaxSr1-xTiO3 Thin Films by a Sol–Gel Technique, J. Am. Ceram. 79 (2010)1593–1598.