Materials Science Division, Department of Physics, The University of Burdwan, Golapbag, Burdwan, 713104, West Bengal, India.
Surface Physics and Materials Science Division, Saha Institute of Nuclear Physics, 1/AF Bidhannagar, Kolkata, 700064, West Bengal, India.
J Hazard Mater. 2017 Oct 5;339:161-173. doi: 10.1016/j.jhazmat.2017.06.034. Epub 2017 Jun 17.
Polyaniline intercalated vanadium oxide xerogel (PV) hybrid nanocomposite (NC) with novel structure has been successfully synthesized through a simple hydrothermal route. Detailed structure and microstructure characterization of PV NC is illustrated through Rietveld refinement of XRD data and FESEM/HRTEM images. Both FTIR and XPS spectra confirm the presence of PANI and water molecules within the NC and partial reduction of V to V, corroborating with the results of XRD pattern analysis. Core-shell structure of PV NC, where PANI sheath layer acts as a shell covering around VO·nHO crystalline core is confirmed from HRTEM images. Successive morphological changes of PV NC with different reaction time have been revealed from FESEM images. UV-vis spectra also confirm the formation of PV NC. Intercalation of water and PANI layers into VO·nHO layer leads to a structural phase transition from orthorhombic to monoclinic phase due to substantial increase in interplanar spacing of (00l) of orthorhombic VO. The photocatalytic property of the as synthesized PV NC has been reported for the first time, with a promising photocatalytic activity for the degradation of organic dye, Rhodamine B (RhB) under visible light irradiation. It is attributed to a synergic effect in between PANI and VO·nHO xerogel. The photocatalyst also shows remarkable real visible light photocatalytic activity with non-absorbing colorless test molecules like phenol and antibiotic kanamycin.
通过简单的水热路线成功合成了具有新颖结构的聚苯胺插层氧化钒干凝胶(PV)杂化纳米复合材料(NC)。通过 XRD 数据的 Rietveld 精修和 FESEM/HRTEM 图像详细说明了 PV NC 的结构和微观结构特征。FTIR 和 XPS 光谱均证实 NC 中存在 PANI 和水分子,并且部分 V 被还原为 V,这与 XRD 图谱分析的结果相符。从 HRTEM 图像证实了 PV NC 的核壳结构,其中 PANI 鞘层充当覆盖 VO·nHO 结晶核的壳。从 FESEM 图像揭示了具有不同反应时间的 PV NC 的连续形态变化。UV-vis 光谱也证实了 PV NC 的形成。水和 PANI 层的插层导致 VO·nHO 层的结构从正交相到单斜相的转变,这是由于正交相 VO 的(00l)面间距的大幅增加所致。首次报道了所合成的 PV NC 的光催化性能,在可见光照射下,对有机染料 Rhodamine B(RhB)的降解具有良好的光催化活性。这归因于 PANI 和 VO·nHO 干凝胶之间的协同作用。该光催化剂还表现出显著的实际可见光光催化活性,对非吸收无色测试分子如苯酚和抗生素卡那霉素也具有活性。