Tetsuo Soga
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Efficient solar water splitting, exemplified by RuO2-catalyzed AlGaAs/Si photoelectrolysis
S Licht, B Wang, S Mukerji, T Soga, M Umeno, H Tributsch
The Journal of Physical Chemistry B 104 (38), 8920-8924, 2000
Nanostructured materials for solar energy conversion
T Soga
Elsevier, 2006
Optical properties of wurtzite structure GaN on sapphire around fundamental absorption edge (0.78–4.77 eV) by spectroscopic ellipsometry and the optical transmission method
G Yu, G Wang, H Ishikawa, M Umeno, T Soga, T Egawa, J Watanabe, ...
Applied Physics Letters 70 (24), 3209-3211, 1997
Optical properties and X-ray photoelectron spectroscopic study of pure and Pb-doped TiO2 thin films
MM Rahman, KM Krishna, T Soga, T Jimbo, M Umeno
Journal of Physics and Chemistry of Solids 60 (2), 201-210, 1999
Over 18% solar energy conversion to generation of hydrogen fuel; theory and experiment for efficient solar water splitting
S Licht, B Wang, S Mukerji, T Soga, M Umeno, H Tributsch
International journal of hydrogen energy 26 (7), 653-659, 2001
Rare earth doped zinc oxide nanophosphor powder: a future material for solid state lighting and solar cells
V Kumar, OM Ntwaeaborwa, T Soga, V Dutta, HC Swart
Acs Photonics 4 (11), 2613-2637, 2017
Multi-walled carbon nanotube-reinforced magnesium alloy composites
Y Shimizu, S Miki, T Soga, I Itoh, H Todoroki, T Hosono, K Sakaki, ...
Scripta materialia 58 (4), 267-270, 2008
Thermal stability of GaN on (1 1 1) Si substrate
H Ishikawa, K Yamamoto, T Egawa, T Soga, T Jimbo, M Umeno
Journal of crystal growth 189, 178-182, 1998
Gas separation properties of functionalized carbon nanotubes mixed matrix membranes
SM Sanip, AF Ismail, PS Goh, T Soga, M Tanemura, H Yasuhiko
Separation and Purification Technology 78 (2), 208-213, 2011
Structural and optical properties of diamond and nano-diamond films grown by microwave plasma chemical vapor deposition
T Sharda, MM Rahaman, Y Nukaya, T Soga, T Jimbo, M Umeno
Diamond and Related Materials 10 (3-7), 561-567, 2001
Characterization of transparent conducting CuI thin films prepared by pulse laser deposition technique
PM Sirimanne, M Rusop, T Shirata, T Soga, T Jimbo
Chemical Physics Letters 366 (5-6), 485-489, 2002
A simple method of producing single-walled carbon nanotubes from a natural precursor: Eucalyptus oil
P Ghosh, RA Afre, T Soga, T Jimbo
Materials Letters 61 (17), 3768-3770, 2007
Growth of vertically aligned carbon nanotubes on silicon and quartz substrate by spray pyrolysis of a natural precursor: Turpentine oil
RA Afre, T Soga, T Jimbo, M Kumar, Y Ando, M Sharon
Chemical physics letters 414 (1-3), 6-10, 2005
Characterization of epitaxially grown GaAs on Si substrates with III‐V compounds intermediate layers by metalorganic chemical vapor deposition
T Soga, S Hattori, S Sakai, M Takeyasu, M Umeno
Journal of applied physics 57 (10), 4578-4582, 1985
Carbon nanotubes by spray pyrolysis of turpentine oil at different temperatures and their studies
RA Afre, T Soga, T Jimbo, M Kumar, Y Ando, M Sharon, PR Somani, ...
Microporous and Mesoporous Materials 96 (1-3), 184-190, 2006
Room‐temperature laser operation of AlGaAs/GaAs double heterostructures fabricated on Si substrates by metalorganic chemical vapor deposition
S Sakai, T Soga, M Takeyasu, M Umeno
Applied physics letters 48 (6), 413-414, 1986
Intrinsic ferromagnetism and magnetic anisotropy in Gd-doped ZnO thin films synthesized by pulsed spray pyrolysis method
M Subramanian, P Thakur, M Tanemura, T Hihara, V Ganesan, T Soga, ...
Journal of Applied Physics 108 (5), 2010
MOCVD growth of GaAs on Si substrates with AlGaP and strained superlattice layers
T Soga, S Hattori, S Sakai, M Takeyasu, M Umeno
Electronics Letters 20 (22), 916-918, 1984
High‐Quality GaN on Si Substrate Using AlGaN/AlN Intermediate Layer
H Ishikawa, GY Zhao, N Nakada, T Egawa, T Soga, T Jimbo, M Umeno
physica status solidi (a) 176 (1), 599-603, 1999
Investigations on the structural, optical and electronic properties of Nd doped ZnO thin films
M Subramanian, P Thakur, S Gautam, KH Chae, M Tanemura, T Hihara, ...
Journal of Physics D: Applied Physics 42 (10), 105410, 2009
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