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Yoshio Nosaka
Yoshio Nosaka
Bestätigte E-Mail-Adresse bei nagaokaut.ac.jp - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Generation and detection of reactive oxygen species in photocatalysis
Y Nosaka, AY Nosaka
Chemical reviews 117 (17), 11302-11336, 2017
33272017
Properties of O2- and OH Formed in TiO2 Aqueous Suspensions by Photocatalytic Reaction and the Influence of H2O2 and Some Ions
T Hirakawa, Y Nosaka
Langmuir 18 (8), 3247-3254, 2002
8972002
Photocatalytic reactivity for O2− and OH radical formation in anatase and rutile TiO2 suspension as the effect of H2O2 addition
T Hirakawa, K Yawata, Y Nosaka
Applied Catalysis A: General 325 (1), 105-111, 2007
4322007
Understanding Hydroxyl Radical (OH) Generation Processes in Photocatalysis
Y Nosaka, A Nosaka
ACS Energy Letters 1 (2), 356-359, 2016
4212016
Nitrogen-doped titanium dioxide photocatalysts for visible response prepared by using organic compounds
Y Nosaka, M Matsushita, J Nishino, AY Nosaka
Science and Technology of Advanced Materials 6 (2), 143, 2005
4082005
Photocatalysis and water purification: from fundamentals to recent applications
M Lu
John Wiley & Sons, 2013
3982013
ESR investigation into the effects of heat treatment and crystal structure on radicals produced over irradiated TiO2 powder
Y Nakaoka, Y Nosaka
Journal of Photochemistry and Photobiology A: Chemistry 110 (3), 299-305, 1997
3961997
Mechanism of the OH Radical Generation in Photocatalysis with TiO2 of Different Crystalline Types
J Zhang, Y Nosaka
The Journal of Physical Chemistry C 118 (20), 10824-10832, 2014
3882014
Efficient photocatalytic activity of water oxidation over WO3/BiVO4 composite under visible light irradiation
P Chatchai, Y Murakami, S Kishioka, AY Nosaka, Y Nosaka
Electrochimica Acta 54 (3), 1147-1152, 2009
3672009
Photocatalytic OH radical formation in TiO 2 aqueous suspension studied by several detection methods
Y Nosaka, S Komori, K Yawata, T Hirakawa, AY Nosaka
Physical Chemistry Chemical Physics 5 (20), 4731-4735, 2003
2742003
Formation and behavior of singlet molecular oxygen in TiO2 photocatalysis studied by detection of near-infrared phosphorescence
T Daimon, Y Nosaka
The Journal of Physical Chemistry C 111 (11), 4420-4424, 2007
2562007
Singlet oxygen formation in photocatalytic TiO 2 aqueous suspension
Y Nosaka, T Daimon, AY Nosaka, Y Murakami
Physical Chemistry Chemical Physics 6 (11), 2917-2918, 2004
2542004
Finite depth spherical well model for excited states of ultrasmall semiconductor particles: an application
Y Nosaka
The Journal of Physical Chemistry 95 (13), 5054-5058, 1991
2431991
Environmentally benign photocatalysts: applications of titanium oxide-based materials
M Anpo, PV Kamat
Springer Science & Business Media, 2010
2112010
Photocatalytic carbon dioxide reduction by copper oxide nanocluster-grafted niobate nanosheets
G Yin, M Nishikawa, Y Nosaka, N Srinivasan, D Atarashi, E Sakai, ...
ACS nano 9 (2), 2111-2119, 2015
2092015
Quantitative Detection of OH Radicals for Investigating the Reaction Mechanism of Various Visible-Light TiO2 Photocatalysts in Aqueous Suspension
J Zhang, Y Nosaka
The Journal of Physical Chemistry C 117 (3), 1383-1391, 2013
2082013
Formation of singlet molecular oxygen associated with the formation of superoxide radicals in aqueous suspensions of TiO2 photocatalysts
T Daimon, T Hirakawa, M Kitazawa, J Suetake, Y Nosaka
Applied Catalysis A: General 340 (2), 169-175, 2008
1992008
Difference in TiO 2 photocatalytic mechanism between rutile and anatase studied by the detection of active oxygen and surface species in water
Y Kakuma, AY Nosaka, Y Nosaka
Physical Chemistry Chemical Physics 17 (28), 18691-18698, 2015
1912015
Application of chemiluminescent probe to monitoring superoxide radicals and hydrogen peroxide in TiO2 photocatalysis
Y Nosaka, Y Yamashita, H Fukuyama
The Journal of Physical Chemistry B 101 (30), 5822-5827, 1997
1891997
Reaction Mechanism of Cu(II)-Grafted Visible-Light Responsive TiO2 and WO3 Photocatalysts Studied by Means of ESR Spectroscopy and Chemiluminescence …
Y Nosaka, S Takahashi, H Sakamoto, AY Nosaka
The Journal of Physical Chemistry C 115 (43), 21283-21290, 2011
1852011
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