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Modulation of microporous/mesoporous structures in self-templated cobalt-silica

机译:自模板钴 - 二氧化硅中微孔/中孔结构的调节

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Finite control of pore size distributions is a highly desired attribute when producing porous materials. While many methodologies strive to produce such materials through one-pot strategies, oftentimes the pore structure requires post-treatment modification. In this study, modulation of pore size in cobalt-silica systems was investigated by a novel, non-destructive, self-templated method. These systems were produced from two cobalt-containing silica starting materials which differed by extent of condensation. These starting materials, sol (SG′) and xerogel (XG′), were mixed with pure silica sol to produce materials containing 5–40?mol% Co. The resultant SG-series materials exhibited typical attributes for cobalt-silica systems: mesoporous characteristics developed at high cobalt concentrations, coinciding with Co3O4 formation; whereas, in the XG-series materials, these mesoporous characteristics were extensively suppressed. Based on an examination of the resultant materials a mechanism describing the pore size formation and modulation of the two systems was proposed. Pore size modulation in the XG-series was caused, in part, by the cobalt source acting as an autogenous template for the condensation of the silica network. These domains could be modified when wetted, allowing for the infiltration and subsequent condensation of silica oligomers into the pre-formed, mesoporous cages, leading to a reduction in the mesoporous content of the final product.
机译:孔径分布的有限控制是产生多孔材料时的高度期望的属性。虽然许多方法通过单锅策略努力生产这些材料,但孔结构需要后处理后修饰。在该研究中,通过一种新颖的非破坏性,自动模板化方法研究了钴 - 二氧化硅系统中孔径的调节。这些系统由含钴的二氧化硅原料制成,其在缩合程度上不同。这些原料,溶胶(SG')和Xerogel(XG')与纯二氧化硅溶胶混合,以产生含有5-40摩尔%Co.所得SG系列材料的典型属性:中孔高钴浓度开发的特征,与CO 3 O 4 形成;虽然,在XG系列材料中,这些介孔特性被广泛抑制。基于所得材料的检查,提出了描述孔径形成和两个系统调制的机制。 XG系列中的孔径调制部分地由钴源作为用于二氧化硅网络冷凝的自动模板。在润湿时可以改变这些结构域,允许渗透和随后的二氧化硅低聚物缩合到预先形成的中孔笼中,导致最终产品的中孔含量的降低。

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