1 - 1 |
Preface: Photocatalysis Hisatomi T, Teramura K, Tanaka T, Domen K |
2 - 8 |
Layering MoS2 on soft hollow g-C3N4 nanostructures for photocatalytic hydrogen evolution Zheng DD, Zhang GG, Hou YD, Wang XC |
9 - 18 |
Enhancement of the Cr(VI) adsorption and photocatalytic reduction activity of g-C3N4 by hydrothermal treatment in HNO3 aqueous solution Wei HT, Zhang Q, Zhang YC, Yang ZJ, Zhu AP, Dionysiou DD |
19 - 25 |
Synergetic effect of TiO2 as co-catalyst for enhanced visible light photocatalytic reduction of Cr(VI) on MoSe2 Chu HP, Lei WY, Liu XJ, Li JL, Zheng W, Zhu G, Li C, Pan LK, Sun CQ |
26 - 33 |
Application of LaMg1/3Ta2/3O2N as a hydrogen evolution photocatalyst of a photocatalyst sheet for Z-scheme water splitting Pan ZH, Hisatomi T, Wang Q, Nakabayashi M, Shibata N, Pan CS, Takata T, Domen K |
34 - 41 |
Controlled growth of CuO/Cu2O hollow microsphere composites as efficient visible-light-active photocatalysts Liu XL, Chen JY, Liu PR, Zhang HM, Li GY, An TC, Zhao HJ |
42 - 49 |
A shuriken-shaped m-BiVO4/{001}-TiO2 heterojunction: Synthesis, structure and enhanced visible light photocatalytic activity Zhu XD, Zhang F, Wang MJ, Gao X, Luo Y, Xue JW, Zhang Y, Ding JJ, Sun S, Bao J, Gao C |
50 - 56 |
Linker-assisted assembly of 1D TiO2 nanobelts/3D CdS nanospheres hybrid heterostructure as efficient visible light photocatalyst Zhang JY, Xiao FX, Xiao GC, Liu B |
57 - 67 |
A proof of the direct hole transfer in photocatalysis: The case of melamine Maurino V, Minella M, Sordello F, Minero C |
68 - 74 |
Photoreductive transformation of fluorinated acetophenone derivatives on titanium dioxide: Defluorination vs. reduction of carbonyl group Kohtani S, Kurokawa T, Yoshioka E, Miyabe H |
75 - 82 |
Pt deposited TiO2 films with exposed {001} facets for photocatalytic degradation of a pharmaceutical pollutant Lin W, Zheng H, Zhang PY, Xu TZ |
83 - 89 |
Polyoxometalate immobilized in MIL-101(Cr) as an efficient catalyst for water oxidation Han JY, Wang DP, Du YH, Xi SB, Chen Z, Yin SM, Zhou TH, Xu R |
90 - 95 |
Design of visible light responsive photocatalysts for selective reduction of chlorinated organic compounds in water Niu JF, Yin LF, Dai YR, Bao YP, Crittenden JC |
96 - 103 |
Nanohybrid materials of titania nanosheets and plasmonic gold nanoparticles for effective hydrogen evolution Xing Z, Zong X, Butburee T, Pan J, Bai Y, Wang LZ |
104 - 110 |
CO2 mediated approach to fabricate the visible-light-responsive mesoporous structured carbon/bismuth oxide composites Wang FX, Liang L, Shi L, Chen KL, Sun JM |
111 - 117 |
Enhanced photocatalytic hydrogen evolution over graphitic carbon nitride modified with Ti-activated mesoporous silica Shen SH, Zhao DM, Chen J, Guo LJ, Mao SS |
118 - 124 |
Incorporating nitrogen-doped graphene oxide dots with graphene oxide sheets for stable and effective hydrogen production through photocatalytic water decomposition Chen LC, Yeh TF, Lee YL, Teng HS |
125 - 132 |
Platinum loaded sodium tantalate photocatalysts prepared by a flux method for photocatalytic steam reforming of methane Yamamoto A, Mizuba S, Saeki Y, Yoshida H |
133 - 139 |
Size-controlled TiO2 nanoparticles on porous hosts for enhanced photocatalytic hydrogen production Jiang CR, Lee KY, Parlett CMA, Bayazit MK, Lau CC, Ruan QS, Moniz SJA, Lee AF, Tang JW |
140 - 148 |
Photocatalytic degradation of gallic acid over CuO-TiO2 composites under UV/Vis LEDs irradiation Luna AL, Valenzuela MA, Colbeau-Justin C, Vazquez P, Rodriguez JL, Avendano JR, Alfaro S, Tirado S, Garduno A, De la Rosa JM |
149 - 153 |
Lattice oxygen assisted room-temperature catalytic process: Secondary alcohol dehydrogenation over Au/birnessite photocatalyst Liu HM, Zhang HB, Shi L, Hai X, Ye JH |
154 - 159 |
Sub-2 nm cobalt oxide cluster catalyst supported on alumina for efficient water oxidation Chen Z, Miao S, Guan JQ, Zhang FX, Li C |
160 - 167 |
Photocatalytic conversion of CO2 in water using fluorinated layered double hydroxides as photocatalysts Iguchi S, Teramura K, Hosokawa S, Tanaka T |
168 - 173 |
Photochemistry of hematite photoanodes under zero applied bias Shelton TL, Harvey N, Wang JR, Osterloh FE |
174 - 181 |
Anodic TiO2 nanotube layer directly formed on the inner surface of Ti pipe for a tubular photocatalytic reactor Kim HI, Kim D, Kim W, Ha YC, Sim SJ, Kim S, Choi W |
182 - 189 |
Intrinsic kinetics of plasmon-enhanced reverse water gas shift on Au and Au-Mo interfacial sites supported on silica Ro I, Carrasquillo-Flores R, Dumesic JA, Huber GW |
190 - 201 |
Exploring Cu oxidation state on TiO2 and its transformation during photocatalytic hydrogen evolution Jung M, Hart JN, Scott J, Ng YH, Jiang Y, Amal R |
202 - 207 |
Metal ion-modified TiO2 photocatalysts having controllable oxidative performance under irradiation of visible light Kitano S, Tanaka A, Hashimoto K, Kominami H |
208 - 219 |
Visible light responsive Zeolite/WO3-Pt hybrid photocatalysts for degradation of pollutants in air Jansson I, Yoshiiri K, Hori H, Garcia-Garcia FJ, Rojas S, Sanchez B, Ohtani B, Suarez S |
220 - 226 |
Photocatalytic activity of one step flame-made fluorine doped TiO2 Dozzi MV, Zuliani A, Grigioni I, Chiarello GL, Meda L, Selli E |
227 - 232 |
Photocatalytic property of metal ion added SrTiO3 to Overall H2O splitting Sakata Y, Miyoshi Y, Maeda T, Ishikiriyama K, Yamazaki Y, Imamura H, Ham Y, Hisatomi T, Kubota J, Yamakata A, Domen K |
233 - 239 |
Facile surfactant driven fabrication of transparent WO3 photoanodes for improved photoelectrochemical properties Kim JH, Lee BJ, Wang P, Son MH, Lee JS |
240 - 249 |
Reactivity of metal oxide nanocluster modified rutile and anatase TiO2: Oxygen vacancy formation and CO2 interaction Fronzi M, Daly W, Nolan M |
250 - 258 |
Facile synthesis of highly efficient nano-structured gallium zinc oxynitride solid solution photocatalyst for visible-light overall water splitting Adeli B, Taghipour F |