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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Synthesis of hierarchically porous MgO monoliths with continuous structure via sol-gel process accompanied by phase separation
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Synthesis of hierarchically porous MgO monoliths with continuous structure via sol-gel process accompanied by phase separation

机译:通过溶胶 - 凝胶加工合成连续结构的分层多孔MgO整体,伴随相分离

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Hierarchically porous magnesium oxide, MgO, monoliths with a well-defined continuous macroporous structure have been synthesized via the sol-gel route accompanied by phase separation. Magnesium chloride hexahydrate was used as a precursor, and propylene oxide was used as an acid scavenger to raise the pH of a reaction solution homogenously. In order to obtain a crack-free monolith after heating in air, poly(vinylpyrrolidone), PVP, was employed as a scaffold of the skeleton as well as a phase separation controller to form the continuous macropores with higher homogeneity. Due to the moderate hydrogen-bonding interaction with magnesium hydroxide, PVP reinforces the gel network essentially composed of fine grained magnesium hydroxide. Even after the removal of all organic components by calcination, the porous gel samples maintained their monolithic form. On the other hand, an additional incorporation of 1,3,5-benzenetricarboxylic acid, H3BTC, was found to be effective in suppressing the oriented growth of the micrometer-sized crystalline phase. The polycrystalline MgO monoliths with specific surface area of 185, 64, and 48m(2)g(-1) were prepared after heating at 400, 500, and 600 degrees C in air, respectively.
机译:通过伴有相分离的溶胶 - 凝胶途径合成了层次的多孔氧化镁,MgO,具有明确的连续大孔结构的整料。使用氯化镁六水合物作为前体,并使用环氧丙烷作为酸清除剂,以均匀地提高反应溶液的pH。为了在空气中加热后获得无裂缝的整料,使用聚(乙烯基吡咯烷酮),PVP作为骨架的支架以及相分离控制器,以形成具有更高均匀性的连续大孔。由于与氢氧化镁的适度氢键相互作用,PVP强化了基本上由细粒氢氧化镁组成的凝胶网络。即使通过煅烧除去所有有机组分后,多孔凝胶样品也保持其整体形式。另一方面,发现1,3,5-苯甲酸H3BTC的另外的掺入是有效抑制微米尺寸晶相的取向生长。在在400,500和600℃的空气中加热后,将具有185,64和48m(-1)的比表面积为185,64和48m(-1)的多晶MgO石英。

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