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湿化学合成多孔氧化铬球过程中的三维形态控制。

Three-dimensional morphology control during wet chemical synthesis of porous chromium oxide spheres.

机构信息

Department of Chemistry and Geochemistry, Colorado School of Mines, Golden, Colorado 80401, USA.

出版信息

ACS Appl Mater Interfaces. 2009 Sep;1(9):1931-7. doi: 10.1021/am900334q.

Abstract

Controlling the morphological evolution in nanostructures is essential for improving their functionality, for example, in catalysis. Here, we demonstrate, using chromium oxide as a model system, that morphologies of functional binary oxide particles can be tailored by an efficient template-free synthetic approach. We construct a morphological "phase diagram" for chromium oxide spheres that shows the evolution of size and surface roughness as a function of the precursor and urea concentrations. It is notable that these chromium oxide spheres show an exceptional ability to remove azo-dye pollutant in water treatment. Thus, the porous chromium oxide spheres with very good dye absorptions are expected to be useful in alternative absorption technologies.

摘要

控制纳米结构的形态演变对于提高其功能至关重要,例如在催化中。在这里,我们以氧化铬为例,证明了通过一种高效的无模板合成方法可以定制功能性二元氧化物颗粒的形态。我们构建了一个氧化铬球的形态“相图”,显示了前驱体和尿素浓度的函数下尺寸和表面粗糙度的演变。值得注意的是,这些氧化铬球在水处理中去除偶氮染料污染物方面表现出了非凡的能力。因此,具有良好染料吸收能力的多孔氧化铬球有望在替代吸收技术中得到应用。

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