A facile one-step electrochemical strategy of doping iron, nitrogen, and fluorine into titania nanotube arrays with enhanced visible light photoactivity

Z Hua, Z Dai, X Bai, Z Ye, H Gu, X Huang - Journal of hazardous materials, 2015 - Elsevier
Highly ordered iron, nitrogen, and fluorine tri-doped TiO 2 (Fe,(N, F)-TiO 2) nanotube arrays
were successfully synthesized by a facile one-step electrochemical method in an NH 4 F …

[HTML][HTML] Enhanced Photocatalytic Performance under Ultraviolet and Visible Light Illumination of ZnO Thin Films Prepared by Modified Sol-Gel Method

R Gegova-Dzhurkova, D Nesheva, I Stambolova… - Molecules, 2024 - mdpi.com
Semiconductor oxides are frequently used as active photocatalysts for the degradation of
organic agents in water polluted by domestic industry. In this study, sol-gel ZnO thin films …

[HTML][HTML] 二氧化硅掺杂对二氧化钛晶型转变机理的影响

吴胜财, 罗弦, 龙永富, 张露, 徐本军, 黄润 - 材料工程, 2020 - html.rhhz.net
不同物理混合SiO 2 掺杂量下, 通过高温原位XRD, TEM, Rietveld 全谱拟合晶胞常数及XPS
分析二氧化钛相变过程中化学键的变化规律, 以及硅对锐钛矿到金红石(A→ R) …

Dependence of the textural properties and surface species of ZnO photocatalytic materials on the type of precipitating agent used in the hydrothermal synthesis

I Stambolova, V Blaskov, D Stoyanova… - Bulletin of Materials …, 2017 - Springer
Three different precipitating agents (NaOH, NH _ 4 (H) CO _ 3 NH 4 (H) CO 3 and CO (NH _
2) _ 2 CO (NH 2) 2) have been applied for the hydrothermal synthesis of ZnO powder …

Fabrication of Photocatalytic Ce-and Fe-Doped and Codoped TiO2 Thin Films

G Bahman Rokh - 2019 - unsworks.unsw.edu.au
Abstract Undoped, single Ce3+-and Fe3+-doped, and Ce3+-Fe3+-codoped TiO2 thin films
were deposited on unpolished fused SiO2 substrates by sol-gel spin coating. All of the …

[PDF][PDF] TRIBOLOGICAL PROPERTIES OF SPRAYED TiO2 AND TiO2/ZnO COATINGS

M KANDEVA, V BLASKOV, N KOSTOVA… - ТРИБОЛОГИЧЕН … - researchgate.net
The effects of ZnO underlayer and titanium precursor on the wear resistance of the TiO2
sprayed coatings were investigated. All samples revealed anatase crystallographic phase …