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Rational Design of Macrocellular TiO{sub}2 and V{sub}2O{sub}5 Monoliths Obtained Through Soft Chemistry and Air-liquid Foams

机译:通过软化化学和空气液体泡沫获得的宏细胞TiO {Sub} 2和V {Sub} 2O {Sub} 2O {Sub}的理性设计

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Chemistry of shapes appears as a strong interdisciplinary field of research that encompasses both the area of soft matter, physical-chemistry and soft chemistry. In this general context, hierarchical inorganic macrocellular monoliths have been obtained using air-liquid foams as a macroscopic pattern while lyotropic mesophases are employed to create porosity at the mesoscale. At the macroscopic length scale, both cell sizes and shapes as well as the Plateau borders thickness and topologies can be designed with a strong degree of control Some examples with different inorganic network as TiO{sub}2 and V{sub}2O{sub}5 are depicted with specific characterizations.
机译:形状化学表现为一个强大的跨学科研究领域,包括软质,物理化学和软化学。在该一般背景下,使用空气液体泡沫作为宏观图案获得分层无机宏观细胞整料,而使用胞间脱铬酶以在MESSCLE中产生孔隙率。在宏观的长度尺度上,可以设计细胞尺寸和形状以及高原边界和拓扑结构,其具有强烈的控制与不同的无机网络的一些示例,如TiO {sub} 2和v {sub} 2o {sub}图5描绘了特定的特征。

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