Kammar S S, Barote V K, Gaikwad A A, Shirsath Sagar E, Ibrahim A A, Batoo K M, Kadam R H, More S S
Department of Physics, HKE's A. V. Patil Degree College, Aland, Kalburgi, KA, India.
Department of Physics, Sant Dnyaneshwar Mahavidyalaya, Soegaon, 431120, Maharashtra, India.
ChemistryOpen. 2024 Oct;13(10):e202400021. doi: 10.1002/open.202400021. Epub 2024 Aug 30.
This research paper delves into the enhancement of wastewater treatment through the design and synthesis of advanced photocatalytic materials, focusing on the effects of sodium (Na) substitution in CaNaTaTiO perovskites. By employing various analytical techniques such as X-ray diffraction, Field Emission Scanning Electron Microscopy, Transmission Electron Microscopy and UV-vis spectroscopy, the study examines the transition of these perovskites from tetragonal to orthorhombic structures and observes a reduction in Ca content with Na substitution, which also favors the cubic phase formation and inhibits secondary phases. Significantly, magnetic property analysis uncovers an unexpected ferromagnetic ordering in these perovskites, including compositions traditionally viewed as non-magnetic. The photocatalytic tests reveal a significant improvement in degrading Rhodamine B dye under visible light, particularly in samples with higher Na levels, attributed to enhanced light absorption and efficient electron processes. The study highlights the optimal Na substitution level for peak photocatalytic performance, offering valuable insights into the complex interplay between structural, magnetic, and photocatalytic properties of these perovskites, and their potential in various applications, thereby contributing to the advancement of wastewater treatment technologies.
本研究论文深入探讨了通过设计和合成先进的光催化材料来强化废水处理,重点关注钙钠钽钛矿(CaNaTaTiO)中钠(Na)取代的影响。通过采用诸如X射线衍射、场发射扫描电子显微镜、透射电子显微镜和紫外可见光谱等各种分析技术,该研究考察了这些钙钛矿从四方结构向正交结构的转变,并观察到随着Na取代,Ca含量降低,这也有利于立方相形成并抑制次生相。值得注意的是,磁性分析揭示了这些钙钛矿中意外的铁磁有序,包括传统上被视为非磁性的成分。光催化测试表明,在可见光下,尤其是在Na含量较高的样品中,降解罗丹明B染料的性能有显著改善,这归因于光吸收增强和有效的电子过程。该研究突出了实现最佳光催化性能的Na取代水平,为这些钙钛矿的结构、磁性和光催化性能之间的复杂相互作用及其在各种应用中的潜力提供了有价值的见解,从而推动了废水处理技术的进步。