Cost-effective transformation of rutile to anatase and synthesis of Zn2Ti3O8

被引:0
|
作者
Draoui, Ahmed [1 ,2 ]
Hebboul, Zoulikha [3 ]
Boudabia, Saad [4 ]
Lefkaier, Ibn Khaldoun [1 ]
Naidjate, Mohammed Elhabib [5 ]
Belbel, Abdeldjabbar [2 ]
Aroudji, Hanane [6 ]
Mokhtari, Aya [7 ]
Goumri-Said, Souraya [8 ]
机构
[1] Univ Amar Telidji Laghouat, Lab Phys Mat LPM, BP 37G, Laghouat 03000, Algeria
[2] Ecole Normale Super Laghouat, Dept Phys, Laghouat, Algeria
[3] Univ Amar Telidji Laghouat, Lab Physicochim Mat LPCM, BP 37G, Laghouat 03000, Algeria
[4] LMSA Univ Ghardaia, Lab Math & Sci Appl, Ghardaia, Algeria
[5] Univ Amar Telidji Laghouat, Lab Semicond & Funct Mat LSFM, BP 37G, Laghouat 03000, Algeria
[6] Univ Amar Telidji Laghouat, Dept Sci Matiere, BP 37G, Laghouat 03000, Algeria
[7] Univ Djelfa, Fac Sci, Lab Sci Mat & Informat, Djelfa, Algeria
[8] Alfaisal Univ, Coll Sci & Gen Studies, Dept Phys, POB 5092, Riyadh 11533, Saudi Arabia
关键词
Hydrothermal; Rutile to anatase; Mechanosynthesis; XRD; FT-IR; UV-Vis; FACILE SYNTHESIS; HYDROTHERMAL SYNTHESIS; PHASE-FORMATION; TIO2; TITANATE; NANOSTRUCTURES; TRANSITION; DEPOSITION; FILMS; DYE;
D O I
10.1007/s11696-025-03915-x
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This study presents two groundbreaking achievements in materials science with significant implications for advanced technologies. First, we report the successful mechanosynthesis of Zn2Ti3O8 through a solvent-free, solid-state reaction between rutile-type TiO2 and ZnO, yielding the compound after 8 hours of milling. Second, we demonstrate a novel reverse phase conversion of TiO2 from rutile to anatase under extreme conditions, involving a highly alkaline (KOH) environment at 160 degrees C, followed by hydrothermal treatment and calcination at 850 degrees C. This unprecedented transformation enhances the anatase phase's morphological, optical, and surface properties, offering substantial advantages for various applications. Comprehensive characterization using X-ray diffraction, UV-Vis, and FT-IR spectroscopy revealed crucial insights into the materials' structural and optical properties. Notably, bandgap energies estimated from Tauc plots showed a systematic decrease with increasing reaction time, ranging from 3.54 to 3.49 eV for 2 to 10 hours, respectively. Our findings contribute significantly to the field by introducing an environmentally friendly Zn2Ti3O8 synthesis route, challenging conventional phase stability understanding, and providing a method for precise bandgap control. This research not only advances fundamental knowledge but also opens new avenues for developing high-performance materials in energy and environmental applications, potentially revolutionizing next-generation technologies.
引用
收藏
页码:2177 / 2189
页数:13
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