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Mor Gopal K.
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http://hub.abes.fr/acs/periodical/langd5/2004/volume_20/issue_19/101021la049075x/authorship/2
http://hub.abes.fr/acs/periodical/jpccck/2007/volume_111/issue_1/101021jp066352v/authorship/2
http://hub.abes.fr/acs/periodical/jpcbfk/2005/volume_109/issue_33/101021jp052736u/authorship/4
http://hub.abes.fr/acs/periodical/jpccck/2007/volume_111/issue_37/101021jp074655z/authorship/4
http://hub.abes.fr/acs/periodical/langd5/2007/volume_23/issue_24/101021la7020403/authorship/2
http://hub.abes.fr/acs/periodical/jpcbfk/2006/volume_110/issue_33/101021jp064020k/authorship/6
http://hub.abes.fr/acs/periodical/jpccck/2007/volume_111/issue_41/101021jp075258r/authorship/6
http://hub.abes.fr/acs/periodical/langd5/2008/volume_24/issue_24/101021la803598v/authorship/2
http://hub.abes.fr/acs/periodical/jpcbfk/2008/volume_112/issue_47/101021jp809312r/authorship/6
http://hub.abes.fr/acs/periodical/jacsat/2008/volume_130/issue_34/101021ja710899q/authorship/4
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TiO2 Nanotube Arrays of 1000 μm Length by Anodization of Titanium Foil: Phenol Red Diffusion
Fabrication of Highly Ordered TiO2 Nanotube Arrays Using an Organic Electrolyte
Surface Modification of Nanoporous Alumina Surfaceswith Poly(ethylene glycol)
Self-Assembled Hybrid Polymer−TiO2 Nanotube Array Heterojunction Solar Cells
Self-Assembled Hybrid Polymer−TiO2 Nanotube Array HeterojunctionSolar Cells
High Carrier Density and Capacitance in TiO2 Nanotube Arrays Induced by Electrochemical Doping
Cation Effect on the Electrochemical Formation of Very High Aspect Ratio TiO2 NanotubeArrays in Formamide−Water Mixtures
Fabrication of Vertically Oriented TiO2 Nanotube Arrays Using Dimethyl SulfoxideElectrolytes
Anodic Growth of Highly Ordered TiO2 Nanotube Arrays to 134 μm in Length
Anodic Growth of Highly Ordered TiO2 Nanotube Arrays to 134 μm in Length
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