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Hierarchically porous nickel/carbon composite monoliths prepared by sol–gel method from an ionic precursor

机译:溶胶-凝胶法由离子前体制备的多层多孔镍/碳复合整料

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摘要

Utilizing a facile sol–gel reaction accompanied by phase separation, rigid monolithic nickel hydroxide-based xerogels and nickel/carbon composites with hierarchical porosity have been successfully fabricated. In the synthetic route starting from nickel chloride as a nickel precursor, trimethylene oxide acts as a gelation initiator to increase pH in a reaction solution. In addition, poly(acrylic acid) plays a double role as a phase separation inducer and as a co-constituent with nickel hydroxide to comprise continuous gel skeletons in the micrometer range. As a result, obtained xerogels possess well-defined macropores evidenced by microscopy observation and mercury porosimetry. Subsequent heat-treatment in air led to the crystallization of NiO at 300 °C, while calcination under argon flow brought about the formation of nickel/carbon (Ni/C) composites with hierarchical pores and large specific surface area at temperatures higher than 300 °C. This is the first report on the preparation of rigid monolithic xerogels and metal/carbon composite with well-defined macropores based on a metal salt precursor containing "divalent" cation.
机译:利用一种容易的溶胶-凝胶反应并进行相分离,已经成功地制备了具有整体孔隙率的刚性整体式氢氧化镍基干凝胶和镍/碳复合材料。在从氯化镍作为镍前体开始的合成路线中,环氧丙烷用作胶凝引发剂以增加反应溶液中的pH。另外,聚丙烯酸作为相分离诱导剂和与氢氧化镍的共组分具有双重作用,以构成微米范围内的连续凝胶骨架。结果,获得的干凝胶具有通过显微镜观察和水银孔隙率法证明的明确的大孔。随后在空气中进行热处理导致NiO在300°C下结晶,而在氩气流下煅烧则导致形成镍/碳(Ni / C)复合材料,该复合材料具有分层的孔并且在高于300°C的温度下具有较大的比表面积C。这是有关基于含“二价”阳离子的金属盐前体制备具有明确定义的大孔的硬质整体干凝胶和金属/碳复合材料的首次报道。

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