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Phase Separation in Al2O3 Sol-gel System Incorporated with High Molecular Weight Poly(ethylene oxide)

机译:掺入高分子量多(环氧乙烷)的Al2O3溶胶 - 凝胶系统中的相分离

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Pure alumina monoliths with well-defined macropores and mesostructured skeleton have been synthesized via a spontaneous route from the aqueous and ethanolic solution of aluminum salts in the presence of propylene oxide and high molecular weight poly(ethylene oxide)(PEO).The addition of propylene oxide to the starting solution controls the gelation,while the addition of PEO induces the phase separation.Appropriate choice of the starting composition,with which the phase separation and gelation concur,produces large-dimension(lOmmxlOmmxlOmm),bicontinuous macroporous Al2O3 monoliths.The mean size of the continuously connected pores is controlled in the micrometer range,depending on the PEO concentration and polarity of the solution.On the other hand,micropores and mesopores,originated from the interstices among primary particles,exhibit median pore size of about 2.6 run and the BET surface area as high as 396 m2/g after dried temperature at 40°C.
机译:通过从氧化丙烷和高分子量聚(环氧乙烷)(PEO)存在的铝盐的水性和乙醇溶液的自发途径,通过自发途径合成了具有明确定义的大孔和腹腔结构骨架的纯氧化铝整料。添加丙烯的加入丙烯oxide to the starting solution controls the gelation,while the addition of PEO induces the phase separation.Appropriate choice of the starting composition,with which the phase separation and gelation concur,produces large-dimension(lOmmxlOmmxlOmm),bicontinuous macroporous Al2O3 monoliths.The mean在千分尺范围内控制连续连接的孔的尺寸,取决于溶液的PEO浓度和极性,另一方面,源自粒子中的微孔和中孔孔,展示孔径约2.6的孔径约2.6次在40℃下干燥温度后,BET表面面积高达396m 2 / g。

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