Back to Search Start Over

Thermodynamic and microstructural analyses of photocatalytic TiO2 from the anodization of biomedical-grade Ti6Al4V in phosphoric acid or sulfuric acid.

Authors :
Cheung, Keng Ho
Pabbruwe, Moreica Beatrice
Chen, Wen-Fan
Koshy, Pramod
Sorrell, Charles Christopher
Source :
Ceramics International. Jan2021, Vol. 47 Issue 2, p1609-1624. 16p.
Publication Year :
2021

Abstract

TiO 2 coatings were fabricated by anodization of Ti6Al4V in 1 M H 3 PO 4 or H 2 SO 4 , at room temperature at 120 V for 10 min, and followed by annealing at 300° or 500 °C for 8 h. Analyses include mineralogy (GAXRD, Raman), chemistry (XPS), morphology and microstructure (FESEM, FIB, 3D confocal microscopy), thermodynamic, optical (UV–Vis), and photocatalytic performance (MB degradation). The present work highlights factors that govern the nature of the materials and their performance. The influence of the oxidation strength of the acid is pervasive in that it impacts on the crystallinity, microstructural homogeneity, coating thickness, Ti3+ concentration, gas generation during arcing to form pores, and resultant pore size and distribution density. A key observation is that the pores form a subsurface network of variable continuity, which has a significant impact on the surface area and associated density of photocatalytically active sites, access by liquids and gases inside the coating, penetration depth of incident radiation, gas condensation, and residual liquid trapping. These data and the related thermodynamic analyses of the acids, anodization processes, and oxidation processes facilitate the generation of schematic models for the anodization mechanisms and the resultant surface, bulk, and microstructural effects that dominate the photocatalytic performance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
47
Issue :
2
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
147344865
Full Text :
https://doi.org/10.1016/j.ceramint.2020.08.277