Jing Mao-Xiang, Han Chong, Wang Zhou, Shen Xiang-Qian
Institute for Advanced Materials, Jiangsu University, Zhenjiang 212013, China.
J Nanosci Nanotechnol. 2013 Jul;13(7):4949-53. doi: 10.1166/jnn.2013.7595.
The core-shell nano-TiO2/Al2O3/NiFe2O4 microparticles of 5-8 microm were prepared by the heterogeneous precipitation followed by calcination treatment. The morphologies, structure, crystalline phase, and magnetic property were characterized by optical biomicroscopy (OBM), scanning electron microscopy (SEM), X-ray diffractometry (XRD) and vibrating sample magnetometer (VSM) respectively. The photocatalytic activity was evaluated by degrading methyl orange solution either under UV light and sunlight. The results indicate that the nano-TiO2 layer consists of needle-like nanoparticles and the intermediate layer of Al2O3 avoids the nano-TiO2 agglomeration, shedding and uneven loading. The nano-TiO2/Al2O3/NiFe2O4 composite particles show high magnetization of 31.5 emu/g and enhanced photocatalytic activity to completely degrade 50 mg/L methyl orange solution either under UV light and sun light. The enhanced activity of the composite is attributed to the unique structure, insulation effect of Al2O3 intermediate layer and the hybrid effect of anatase TiO2 and NiFe2O4. The obtained catalyst may be magnetically separable and useful for many practical applications due to the improved photocatalytic properties under sunlight.
通过非均相沉淀法制备了粒径为5-8微米的核壳纳米TiO₂/Al₂O₃/NiFe₂O₄微粒,随后进行煅烧处理。分别采用光学生物显微镜(OBM)、扫描电子显微镜(SEM)、X射线衍射仪(XRD)和振动样品磁强计(VSM)对其形貌、结构、晶相和磁性进行了表征。通过在紫外光和太阳光下降解甲基橙溶液来评估光催化活性。结果表明,纳米TiO₂层由针状纳米颗粒组成,Al₂O₃中间层可避免纳米TiO₂的团聚、脱落和负载不均匀。纳米TiO₂/Al₂O₃/NiFe₂O₄复合颗粒显示出31.5 emu/g的高磁化强度,并且在紫外光和太阳光下均具有增强的光催化活性,能够完全降解50 mg/L的甲基橙溶液。复合材料活性的增强归因于其独特的结构、Al₂O₃中间层的绝缘效应以及锐钛矿TiO₂和NiFe₂O₄的杂化效应。由于在太阳光下具有改善的光催化性能,所制备的催化剂具有磁分离性,可用于许多实际应用。