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Hierarchically Porous Zirconia Monolith Fabricatedfrom Bacterial Cellulose and Preceramic Polymer

机译:分层多孔氧化锆整料的制备来自细菌纤维素和陶瓷前聚合物

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摘要

A hierarchically porous zirconia (ZrO2) monolith was successfully fabricated by using bacterial cellulose (BC) as a biotemplate and preceramic polymer as a zirconium resource, via freeze-drying and two-step calcination process. Images of scanning electron microscopy showed that the ZrO2 monolith well-replicated a three-dimensional reticulated structure of pristine BC and possessed good morphology stability till 1100 °C in air. Results of N2 adsorption/desorption and mercury porosimetry analysis revealed the hierarchically porous structure and large specific area (9.7 m2·g–1) of the ZrO2 monolith, respectively. Patterns of X-ray powder diffraction indicated that the monoclinic phase and tetragonal phase coexisted in the ZrO2 monolith with the former as the main phase. In addition, the ZrO2 monolith possessed low bulk density (0.13 g·cm–3) and good mechanical strength. These properties suggest that the as-prepared ZrO2 monolith has a great potential to serve as an ideal catalyst or catalyst support.
机译:以细菌纤维素(BC)为生物模板,以陶瓷前驱体聚合物为锆资源,通过冷冻干燥和两步煅烧工艺,成功制备了分层多孔氧化锆(ZrO2)整体材料。扫描电子显微镜的图像显示,ZrO2整料很好地复制了原始BC的三维网状结构,并在空气中保持良好的形态稳定性,直到1100°C。 N2吸附/解吸和汞孔隙率分析结果分别显示ZrO2整体结构的多孔结构和较大的比表面积(9.7 m 2 ·g –1 )。 X射线粉末衍射图谱表明,ZrO2整料以单相和四方相共存,前者为主要相。另外,ZrO2整料的堆积密度低(0.13 g·cm –3 ),机械强度好。这些性质表明,所制备的ZrO 2整体料具有用作理想催化剂或催化剂载体的巨大潜力。

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