Quanyi Hao,Shuang Liu,Xiaoming Yin,Zhifeng Du,Ming Zhang,Limiao Li,Yanguo Wang,Taihong Wang,Quihong Li
出处
期刊:CrystEngComm [The Royal Society of Chemistry] 日期:2010-10-06卷期号:13 (3): 806-812被引量:99
标识
DOI:10.1039/c0ce00194e
摘要
Mesoporous flower-like and urchin-like α-Fe2O3 nanostructures have been successfully synthesized by a simple solution-based reaction and sequential calcination. Detailed experiments demonstrated that the morphology of the hierarchical α-FeOOH precursors could be easily controlled by adjusting the experimental conditions including reactant concentration, solvent composition, reaction time, and reaction temperature. On the basis of time-dependent experiments, a multistage growth mechanism for the formation of the α-FeOOH super-architectures was proposed. In addition, by virtue of the unique hierarchical mesoporous structure and comparative high specific surface area, these obtained α-Fe2O3 nanostructures exhibited enhanced sensing performances to ethanol. This method is expected to be a useful technique for controlling the diverse morphologies of iron oxide superstructures that could meet the demands of a variety of applications, such as gas sensors, lithium-ion batteries, catalysis, waste-water treatment, and pigments.