Quanyi HaoShuang LiuXiaoming YinZhifeng DuMing ZhangLimiao LiYanguo WangTaihong WangQuihong Li
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.
Haojie SongXiaohua JiaHuan QiXiaofei YangHua TangChunying Min
Peng SunSisi DuTianlin YangXiaowei LiFengmin LiuXishuang LiangYuan GaoYanfeng SunGeyu Lu
Peng SunChen WangXin ZhouPengfei ChengKengo ShimanoeGeyu LuNoboru Yamazoe
Quanyi HaoShuang LiuXiaoming YinYanguo WangQiuhong LiTaihong Wang
Peng SunYaxin CaiSisi DuXiumei XuLu YouJian MaFengmin LiuXishuang LiangYanfeng SunGeyu Lu