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首页> 外文期刊>CrystEngComm >Mesoporous-structure-tailored hydrothermal synthesis and mechanism of the SrTiO3 mesoporous spheres by controlling the silicate semipermeable membranes with the KOH concentrations
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Mesoporous-structure-tailored hydrothermal synthesis and mechanism of the SrTiO3 mesoporous spheres by controlling the silicate semipermeable membranes with the KOH concentrations

机译:通过控制KOH浓度的硅酸盐半透膜,定制介孔结构的水热合成方法和SrTiO3介孔球的机理

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Mesoporous structure-tailored SrTiO3 mesoporous spheres have been hydrothermally realized by controlling the silicate semipermeable membranes with KOH concentration. The phase and microstructures were investigated by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, high-resolution transmission electron microscopy, thermogravimetric analysis and N2-physisorption techniques, respectively. Because the high KOH concentration lowers the polymerization degree of the silicate anion species, the silicate semipermeable membranes become thinner with increasing KOH concentration. Whereas the attenuated silicate semipermeable membranes favour the penetration of the metal ions, the primary SrTiO3 nanocrystallites for the self-assembly of the SrTiO3 mesoporous spheres grow larger as the KOH concentration increases. As a consequence, the mesoporous structures of the self-assembled SrTiO3 mesoporous spheres can be simply tailored by adjusting the KOH concentration of the hydrothermal reaction system. Moreover, because the attenuation of the silicate membrane facilitates the orientation attachment of the primary nanocrystallites, the self-assembled SrTiO3 mesoporous spheres trend to single-crystal-like with the increasing KOH concentration.
机译:通过控制KOH浓度的硅酸盐半透膜,已经水热实现了介孔结构定制的SrTiO3介孔球。通过X射线衍射,扫描电子显微镜,透射电子显微镜,高分辨率透射电子显微镜,热重分析和N 2物理吸附技术分别研究了相和微观结构。因为高的KOH浓度降低了硅酸盐阴离子种类的聚合度,所以随着KOH浓度的增加,硅酸盐半透膜变得更薄。尽管减毒的硅酸盐半透膜有利于金属离子的渗透,但随着KOH浓度的增加,用于SrTiO3介孔球自组装的主要SrTiO3纳米微晶会变大。结果,可以通过调节水热反应系统的KOH浓度来简单地定制自组装的SrTiO 3介孔球的介孔结构。而且,由于硅酸盐膜的衰减促进了初级纳米微晶的定向附着,所以随着KOH浓度的增加,自组装的SrTiO3介孔球趋于单晶状。

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