1 |
Nano-hydroxyapatite crystal formation based on calcified TiO2 nanotube arrays Lin QX, Huang D, Du JJ, Wei Y, Hu YC, Lian XJ, Xie X, Chen WY, Zhang YS Applied Surface Science, 478, 237, 2019 |
2 |
In-vitro bioactivity and electrochemical behavior of polyaniline encapsulated titania nanotube arrays for biomedical applications Agilan P, Rajendran N Applied Surface Science, 439, 66, 2018 |
3 |
Influence of the Ti microstructure on anodic self-organized TiO2 nanotube layers produced in ethylene glycol electrolytes Macak JM, Jarosova M, Jager A, Sopha H, Klementova M Applied Surface Science, 371, 607, 2016 |
4 |
Self-organized Anodic TiO2 Nanotube Layers: Influence of the Ti substrate on Nanotube Growth and Dimensions Sopha H, Jager A, Knotek P, Tesar K, Jarosova M, Macak JM Electrochimica Acta, 190, 744, 2016 |
5 |
Facile fabrication of superhydrophilic/superhydrophobic surface on titanium substrate by single-step anodization and fluorination Liang JS, Liu KY, Wang DZ, Li H, Li PF, Li SZ, Su SJ, Xu SC, Luo Y Applied Surface Science, 338, 126, 2015 |
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Superhydrophobic surface of TiO2 hierarchical nanostructures fabricated by Ti anodization Dong JY, Ouyang X, Han J, Qiu W, Gao W Journal of Colloid and Interface Science, 420, 97, 2014 |
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Synthesis of anodic titania nanotubes in Na2SO4/NaF electrolyte: A comparison between anodization time and specimens with biomaterial based approaches Balakrishnan M, Narayanan R Thin Solid Films, 540, 23, 2013 |
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Titanium and silver contacts on thermally oxidized titanium chip: Electrical and gas sensing properties Hossein-Babaei F, Rahbarpour S Solid-State Electronics, 56(1), 185, 2011 |
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Kinetics of titania nanotube formation by anodization of titanium films Butail G, Ganesan PG, Raddiar M, Teki R, Ravishankar N, Duquette DJ, Ramanath G Thin Solid Films, 519(6), 1821, 2011 |
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Branched titania nanotubes through anodization voltage control Butail G, Ganesan PG, Teki R, Mahima R, Ravishankar N, Duquette DJ, Ramanath G Thin Solid Films, 520(1), 235, 2011 |