-
1
-
-
35348875044
-
Electrochemical photolysis of water at a semiconductor electrode
-
Fujishima A., Honda K. Electrochemical photolysis of water at a semiconductor electrode. Nature 1972, 238:37-38.
-
(1972)
Nature
, vol.238
, pp. 37-38
-
-
Fujishima, A.1
Honda, K.2
-
2
-
-
0036778705
-
Photo-electrochemical hydrogen generation from water using solar energy. Materials-related aspects
-
Bak T., Nowotny J., Rekas M., Sorrell C.C. Photo-electrochemical hydrogen generation from water using solar energy. Materials-related aspects. Int. J. Hydrog. Energy 2002, 27:991-1022.
-
(2002)
Int. J. Hydrog. Energy
, vol.27
, pp. 991-1022
-
-
Bak, T.1
Nowotny, J.2
Rekas, M.3
Sorrell, C.C.4
-
3
-
-
78449289476
-
Solar water splitting cells
-
Walter M.G., Warren E.L., McKone J.R., Boettcher S.W., Mi Q.X., Santori E.A., Lewis N.S. Solar water splitting cells. Chem. Rev. 2010, 110:6446-6473.
-
(2010)
Chem. Rev.
, vol.110
, pp. 6446-6473
-
-
Walter, M.G.1
Warren, E.L.2
McKone, J.R.3
Boettcher, S.W.4
Mi, Q.X.5
Santori, E.A.6
Lewis, N.S.7
-
4
-
-
84874430083
-
Oxygen-deficient metal oxide nanostructures for photoelectrochemical water oxidation and other applications
-
Wang G.M., Ling Y.C., Li Y. Oxygen-deficient metal oxide nanostructures for photoelectrochemical water oxidation and other applications. Nanoscale 2012, 4:6682-6691.
-
(2012)
Nanoscale
, vol.4
, pp. 6682-6691
-
-
Wang, G.M.1
Ling, Y.C.2
Li, Y.3
-
5
-
-
77954249378
-
Hydrogen generation from photoelectrochemical water splitting based on nanomaterials
-
Li Y., Zhang J.Z. Hydrogen generation from photoelectrochemical water splitting based on nanomaterials. Laser Photon. Rev. 2010, 4:517-528.
-
(2010)
Laser Photon. Rev.
, vol.4
, pp. 517-528
-
-
Li, Y.1
Zhang, J.Z.2
-
6
-
-
79954600047
-
Recent progress on photocatalytic and photoelectrochemical water splitting under visible light irradiation
-
Abe R. Recent progress on photocatalytic and photoelectrochemical water splitting under visible light irradiation. J. Photochem. Photobiol. C-Photochem. Rev. 2010, 11:179-209.
-
(2010)
J. Photochem. Photobiol. C-Photochem. Rev.
, vol.11
, pp. 179-209
-
-
Abe, R.1
-
7
-
-
57649159482
-
Heterogeneous photocatalyst materials for water splitting
-
Kudo A., Miseki Y. Heterogeneous photocatalyst materials for water splitting. Chem. Soc. Rev. 2009, 38:253-278.
-
(2009)
Chem. Soc. Rev.
, vol.38
, pp. 253-278
-
-
Kudo, A.1
Miseki, Y.2
-
8
-
-
31544439938
-
2 nanotube arrays with high aspect ratios for efficient solar water splitting
-
2 nanotube arrays with high aspect ratios for efficient solar water splitting. Nano Lett. 2006, 6:24-28.
-
(2006)
Nano Lett.
, vol.6
, pp. 24-28
-
-
Park, J.H.1
Kim, S.2
Bard, A.J.3
-
12
-
-
79960245034
-
2 nanowire arrays for photoelectrochemical water splitting
-
2 nanowire arrays for photoelectrochemical water splitting. Nano Lett. 2011, 11:3026-3033.
-
(2011)
Nano Lett.
, vol.11
, pp. 3026-3033
-
-
Wang, G.M.1
Wang, H.Y.2
Ling, Y.C.3
Tang, Y.C.4
Yang, X.Y.5
Fitzmorris, R.C.6
Wang, C.C.7
Zhang, J.Z.8
Li, Y.9
-
13
-
-
76749158974
-
2 nanostructures for photoelectrochemical solar hydrogen generation
-
2 nanostructures for photoelectrochemical solar hydrogen generation. Nano Lett. 2010, 10:478-483.
-
(2010)
Nano Lett.
, vol.10
, pp. 478-483
-
-
Hensel, J.1
Wang, G.M.2
Li, Y.3
Zhang, J.Z.4
-
14
-
-
84862269214
-
2 nanowire arrays with CdS quantum dot sensitization
-
2 nanowire arrays with CdS quantum dot sensitization. Nanoscale 2012, 4:1463-1466.
-
(2012)
Nanoscale
, vol.4
, pp. 1463-1466
-
-
Wang, H.Y.1
Wang, G.M.2
Ling, Y.C.3
Lepert, M.4
Wang, C.C.5
Zhang, J.Z.6
Li, Y.7
-
15
-
-
84864225582
-
Solar driven hydrogen releasing from urea and human urine
-
Wang G.M., Ling Y.C., Lu X.H., Wang H.Y., Qian F., Tong Y.X., Li Y. Solar driven hydrogen releasing from urea and human urine. Energy Environ. Sci. 2012, 5:8215-8219.
-
(2012)
Energy Environ. Sci.
, vol.5
, pp. 8215-8219
-
-
Wang, G.M.1
Ling, Y.C.2
Lu, X.H.3
Wang, H.Y.4
Qian, F.5
Tong, Y.X.6
Li, Y.7
-
18
-
-
84862867928
-
2 nanowire arrays: a study of the dependence on length and atomic layer deposition coating
-
2 nanowire arrays: a study of the dependence on length and atomic layer deposition coating. ACS Nano 2012, 6:5060-5069.
-
(2012)
ACS Nano
, vol.6
, pp. 5060-5069
-
-
Hwang, Y.J.1
Hahn, C.2
Liu, B.3
Yang, P.D.4
-
20
-
-
61649100363
-
2 core/shell nanowire arrays with enhanced photoactivity
-
2 core/shell nanowire arrays with enhanced photoactivity. Nano Lett. 2009, 9:410-415.
-
(2009)
Nano Lett.
, vol.9
, pp. 410-415
-
-
Hwang, Y.J.1
Boukai, A.2
Yang, P.D.3
-
21
-
-
84868529176
-
Effects of hydrogen treatment and air annealing on ultrafast charge carrier dynamics in ZnO nanowires under in situ photoelectrochemical conditions
-
Cooper J.K., Ling Y.C., Longo C., Li Y., Zhang J.Z. Effects of hydrogen treatment and air annealing on ultrafast charge carrier dynamics in ZnO nanowires under in situ photoelectrochemical conditions. J. Phys. Chem. C 2012, 116:17360-17368.
-
(2012)
J. Phys. Chem. C
, vol.116
, pp. 17360-17368
-
-
Cooper, J.K.1
Ling, Y.C.2
Longo, C.3
Li, Y.4
Zhang, J.Z.5
-
22
-
-
66749095356
-
Nitrogen-doped ZnO nanowire arrays for photoelectrochemical water splitting
-
Yang X.Y., Wolcott A., Wang G.M., Sobo A., Fitzmorris R.C., Qian F., Zhang J.Z., Li Y. Nitrogen-doped ZnO nanowire arrays for photoelectrochemical water splitting. Nano Lett. 2009, 9:2331-2336.
-
(2009)
Nano Lett.
, vol.9
, pp. 2331-2336
-
-
Yang, X.Y.1
Wolcott, A.2
Wang, G.M.3
Sobo, A.4
Fitzmorris, R.C.5
Qian, F.6
Zhang, J.Z.7
Li, Y.8
-
23
-
-
77949465889
-
Double-sided CdS and CdSe quantum dot co-sensitized ZnO nanowire arrays for photoelectrochemical hydrogen generation
-
Wang G.M., Yang X.Y., Qian F., Zhang J.Z., Li Y. Double-sided CdS and CdSe quantum dot co-sensitized ZnO nanowire arrays for photoelectrochemical hydrogen generation. Nano Lett. 2010, 10:1088-1092.
-
(2010)
Nano Lett.
, vol.10
, pp. 1088-1092
-
-
Wang, G.M.1
Yang, X.Y.2
Qian, F.3
Zhang, J.Z.4
Li, Y.5
-
24
-
-
84855758556
-
Secondary branching and nitrogen doping of ZnO nanotetrapods: building a highly active network for photoelectrochemical water splitting
-
Qiu Y.C., Yan K.Y., Deng H., Yang S.H. Secondary branching and nitrogen doping of ZnO nanotetrapods: building a highly active network for photoelectrochemical water splitting. Nano Lett. 2012, 12:407-413.
-
(2012)
Nano Lett.
, vol.12
, pp. 407-413
-
-
Qiu, Y.C.1
Yan, K.Y.2
Deng, H.3
Yang, S.H.4
-
25
-
-
83655164327
-
Interface engineering by piezoelectric potential in ZnO-based photoelectrochemical anode
-
Shi J., Starr M.B., Xiang H., Hara Y., Anderson M.A., Seo J.H., Ma Z.Q., Wang X.D. Interface engineering by piezoelectric potential in ZnO-based photoelectrochemical anode. Nano Lett. 2011, 11:5587-5593.
-
(2011)
Nano Lett.
, vol.11
, pp. 5587-5593
-
-
Shi, J.1
Starr, M.B.2
Xiang, H.3
Hara, Y.4
Anderson, M.A.5
Seo, J.H.6
Ma, Z.Q.7
Wang, X.D.8
-
26
-
-
84863707217
-
Enhanced photoactivity and stability of carbon and nitrogen co-treated ZnO nanorod arrays for photoelectrochemical water splitting
-
Xie S.L., Lu X.H., Zhai T., Li W., Yu M.H., Liang C.L., Tong Y.X. Enhanced photoactivity and stability of carbon and nitrogen co-treated ZnO nanorod arrays for photoelectrochemical water splitting. J. Mater. Chem. 2012, 22:14272-14275.
-
(2012)
J. Mater. Chem.
, vol.22
, pp. 14272-14275
-
-
Xie, S.L.1
Lu, X.H.2
Zhai, T.3
Li, W.4
Yu, M.H.5
Liang, C.L.6
Tong, Y.X.7
-
27
-
-
84863160599
-
1-xSe@ZnO core-shell nanowire array electrodes for photoelectrochemical hydrogen generation
-
1-xSe@ZnO core-shell nanowire array electrodes for photoelectrochemical hydrogen generation. J. Phys. Chem. C 2012, 116:3802-3807.
-
(2012)
J. Phys. Chem. C
, vol.116
, pp. 3802-3807
-
-
Li, H.X.1
Cheng, C.W.2
Li, X.L.3
Liu, J.P.4
Guan, C.5
Tay, Y.Y.6
Fan, H.J.7
-
28
-
-
84866976395
-
Visible-light-driven photocatalytic carbon-doped porous ZnO nanoarchitectures for solar water-splitting
-
Lin Y.G., Hsu Y.K., Chen Y.C., Chen L.C., Chen S.Y., Chen K.H. Visible-light-driven photocatalytic carbon-doped porous ZnO nanoarchitectures for solar water-splitting. Nanoscale 2012, 4:6515-6519.
-
(2012)
Nanoscale
, vol.4
, pp. 6515-6519
-
-
Lin, Y.G.1
Hsu, Y.K.2
Chen, Y.C.3
Chen, L.C.4
Chen, S.Y.5
Chen, K.H.6
-
32
-
-
77952837885
-
Photoelectrochemical water splitting with mesoporous hematite prepared by a solution-based colloidal approach
-
Sivula K., Zboril R., Le Formal F., Robert R., Weidenkaff A., Tucek J., Frydrych J., Gratzel M. Photoelectrochemical water splitting with mesoporous hematite prepared by a solution-based colloidal approach. J. Am. Chem. Soc. 2010, 132:7436-7444.
-
(2010)
J. Am. Chem. Soc.
, vol.132
, pp. 7436-7444
-
-
Sivula, K.1
Zboril, R.2
Le Formal, F.3
Robert, R.4
Weidenkaff, A.5
Tucek, J.6
Frydrych, J.7
Gratzel, M.8
-
33
-
-
79952270805
-
Nanonet-based hematite heteronanostructures for efficient solar water splitting
-
Lin Y.J., Zhou S., Sheehan S.W., Wang D.W. Nanonet-based hematite heteronanostructures for efficient solar water splitting. J. Am. Chem. Soc. 2011, 133:2398-2401.
-
(2011)
J. Am. Chem. Soc.
, vol.133
, pp. 2398-2401
-
-
Lin, Y.J.1
Zhou, S.2
Sheehan, S.W.3
Wang, D.W.4
-
34
-
-
80051633745
-
3-based films for water oxidation
-
3-based films for water oxidation. Nano Lett. 2011, 11:3503-3509.
-
(2011)
Nano Lett.
, vol.11
, pp. 3503-3509
-
-
Wang, G.M.1
Ling, Y.C.2
Wheeler, D.A.3
George, K.E.N.4
Horsley, K.5
Heske, C.6
Zhang, J.Z.7
Li, Y.8
-
35
-
-
84877738485
-
2 on hematite for photoelectrochemical water oxidation
-
2 on hematite for photoelectrochemical water oxidation. Nanoscale 2013, 5:4129-4133.
-
(2013)
Nanoscale
, vol.5
, pp. 4129-4133
-
-
Wang, G.M.1
Ling, Y.C.2
Lu, X.H.3
Zhai, T.4
Qian, F.5
Tong, Y.X.6
Li, Y.7
-
36
-
-
84856192573
-
Plasmon-enhanced photocatalytic activity of iron oxide on gold nanopillars
-
Gao H.W., Liu C., Jeong H.E., Yang P.D. Plasmon-enhanced photocatalytic activity of iron oxide on gold nanopillars. ACS Nano 2012, 6:234-240.
-
(2012)
ACS Nano
, vol.6
, pp. 234-240
-
-
Gao, H.W.1
Liu, C.2
Jeong, H.E.3
Yang, P.D.4
-
37
-
-
84873167871
-
Facile post-growth doping of nanostructured hematite photoanodes for enhanced photoelectrochemical water oxidation
-
Franking R., Li L.S., Lukowski M.A., Meng F., Tan Y.Z., Hamers R.J., Jin S. Facile post-growth doping of nanostructured hematite photoanodes for enhanced photoelectrochemical water oxidation. Energy Environ. Sci. 2013, 6:500-512.
-
(2013)
Energy Environ. Sci.
, vol.6
, pp. 500-512
-
-
Franking, R.1
Li, L.S.2
Lukowski, M.A.3
Meng, F.4
Tan, Y.Z.5
Hamers, R.J.6
Jin, S.7
-
39
-
-
33745685053
-
4 thin-film electrodes under visible light and significant effect of Ag ion treatment
-
4 thin-film electrodes under visible light and significant effect of Ag ion treatment. J. Phys. Chem. B 2006, 110:11352-11360.
-
(2006)
J. Phys. Chem. B
, vol.110
, pp. 11352-11360
-
-
Sayama, K.1
Nomura, A.2
Arai, T.3
Sugita, T.4
Abe, R.5
Yanagida, M.6
Oi, T.7
Iwasaki, Y.8
Abe, Y.9
Sugihara, H.10
-
43
-
-
79955927165
-
4 Heterojunction films for efficient photoelectrochemical water splitting
-
4 Heterojunction films for efficient photoelectrochemical water splitting. Nano Lett. 2011, 11:1928-1933.
-
(2011)
Nano Lett.
, vol.11
, pp. 1928-1933
-
-
Su, J.Z.1
Guo, L.J.2
Bao, N.Z.3
Grimes, C.A.4
-
44
-
-
77955948814
-
4 fine particles prepared in an aqueous acetic acid solution
-
4 fine particles prepared in an aqueous acetic acid solution. J. Mater. Chem. 2010, 20:7536-7542.
-
(2010)
J. Mater. Chem.
, vol.20
, pp. 7536-7542
-
-
Iwase, A.1
Kudo, A.2
-
46
-
-
76349098710
-
4 nanowire arrays and structural characterization: application to photoelectrochemical water splitting
-
4 nanowire arrays and structural characterization: application to photoelectrochemical water splitting. Cryst. Growth Des. 2010, 10:856-861.
-
(2010)
Cryst. Growth Des.
, vol.10
, pp. 856-861
-
-
Su, J.Z.1
Guo, L.J.2
Yoriya, S.3
Grimes, C.A.4
-
49
-
-
77955384578
-
4-based photocatalysts by scanning electrochemical microscopy (SECM) and studies of their photoelectrochemical properties
-
4-based photocatalysts by scanning electrochemical microscopy (SECM) and studies of their photoelectrochemical properties. J. Phys. Chem. C 2010, 114:13322-13328.
-
(2010)
J. Phys. Chem. C
, vol.114
, pp. 13322-13328
-
-
Ye, H.1
Lee, J.2
Jang, J.S.3
Bard, A.J.4
-
51
-
-
80053315485
-
4 photoanode
-
4 photoanode. Energy Environ. Sci. 2011, 4:4046-4051.
-
(2011)
Energy Environ. Sci.
, vol.4
, pp. 4046-4051
-
-
Luo, W.J.1
Yang, Z.S.2
Li, Z.S.3
Zhang, J.Y.4
Liu, J.G.5
Zhao, Z.Y.6
Wang, Z.Q.7
Yan, S.C.8
Yu, T.9
Zou, Z.G.10
-
54
-
-
84863230218
-
3 nanoflakes show enhanced photostability
-
3 nanoflakes show enhanced photostability. Energy Environ. Sci. 2012, 5:6180-6187.
-
(2012)
Energy Environ. Sci.
, vol.5
, pp. 6180-6187
-
-
Wang, G.M.1
Ling, Y.C.2
Wang, H.Y.3
Yang, X.Y.4
Wang, C.C.5
Zhang, J.Z.6
Li, Y.7
-
55
-
-
79955606207
-
3 nanostructures on carbon paper: photoelectrochemical property and visible light driven photocatalysis
-
3 nanostructures on carbon paper: photoelectrochemical property and visible light driven photocatalysis. Chem. Commun. 2011, 47:5804-5806.
-
(2011)
Chem. Commun.
, vol.47
, pp. 5804-5806
-
-
Zhang, X.H.1
Lu, X.H.2
Shen, Y.Q.3
Han, J.B.4
Yuan, L.Y.5
Gong, L.6
Xu, Z.7
Bai, X.D.8
Wei, M.9
Tong, Y.X.10
Gao, Y.H.11
Chen, J.12
Zhou, J.13
Wang, Z.L.14
-
57
-
-
83455218301
-
3 crystals as anodes for photoelectrochemical water oxidation
-
3 crystals as anodes for photoelectrochemical water oxidation. Chem. Commun. 2012, 48:729-731.
-
(2012)
Chem. Commun.
, vol.48
, pp. 729-731
-
-
Qin, D.D.1
Tao, C.L.2
Friesen, S.A.3
Wang, T.H.4
Varghese, O.K.5
Bao, N.Z.6
Yang, Z.Y.7
Mallouk, T.E.8
Grimes, C.A.9
-
58
-
-
84868374810
-
3-based tandem cell device
-
3-based tandem cell device. Energy Environ. Sci. 2012, 5:9091-9099.
-
(2012)
Energy Environ. Sci.
, vol.5
, pp. 9091-9099
-
-
Esposito, D.V.1
Forest, R.V.2
Chang, Y.C.3
Gaillard, N.4
McCandless, B.E.5
Hou, S.Y.6
Lee, K.H.7
Birkmire, R.W.8
Chen, J.G.G.9
-
60
-
-
84859779888
-
3 photoelectrodes for use in solar water oxidation
-
3 photoelectrodes for use in solar water oxidation. J. Phys. Chem. C 2012, 116:7612-7620.
-
(2012)
J. Phys. Chem. C
, vol.116
, pp. 7612-7620
-
-
Hill, J.C.1
Choi, K.S.2
-
61
-
-
80053315958
-
A perspective on solar-driven water splitting with all-oxide hetero-nanostructures
-
Kronawitter C.X., Vayssieres L., Shen S.H., Guo L.J., Wheeler D.A., Zhang J.Z., Antoun B.R., Mao S.S. A perspective on solar-driven water splitting with all-oxide hetero-nanostructures. Energy Environ. Sci. 2011, 4:3889-3899.
-
(2011)
Energy Environ. Sci.
, vol.4
, pp. 3889-3899
-
-
Kronawitter, C.X.1
Vayssieres, L.2
Shen, S.H.3
Guo, L.J.4
Wheeler, D.A.5
Zhang, J.Z.6
Antoun, B.R.7
Mao, S.S.8
-
63
-
-
84863855835
-
5 nanotube arrays modified with electrocatalysts for photoelectrochemical water oxidation
-
5 nanotube arrays modified with electrocatalysts for photoelectrochemical water oxidation. J. Phys. Chem. C 2012, 116:14541-14550.
-
(2012)
J. Phys. Chem. C
, vol.116
, pp. 14541-14550
-
-
Cong, Y.Q.1
Park, H.S.2
Wang, S.J.3
Dang, H.X.4
Fan, F.R.F.5
Mullins, C.B.6
Bard, A.J.7
-
64
-
-
84874029832
-
Growth of gallium nitride and indium nitride nanowires on conductive and flexible carbon cloth substrates
-
Yang Y., Ling Y.C., Wang G.M., Lu X.H., Tong Y.X., Li Y. Growth of gallium nitride and indium nitride nanowires on conductive and flexible carbon cloth substrates. Nanoscale 2013, 5:1820-1824.
-
(2013)
Nanoscale
, vol.5
, pp. 1820-1824
-
-
Yang, Y.1
Ling, Y.C.2
Wang, G.M.3
Lu, X.H.4
Tong, Y.X.5
Li, Y.6
-
65
-
-
84872015504
-
5 nanorod arrays for solar-driven photoelectrochemical water splitting
-
5 nanorod arrays for solar-driven photoelectrochemical water splitting. Adv. Mater. 2013, 25:125-131.
-
(2013)
Adv. Mater.
, vol.25
, pp. 125-131
-
-
Li, Y.B.1
Takata, T.2
Cha, D.3
Takanabe, K.4
Minegishi, T.5
Kubota, J.6
Domen, K.7
-
66
-
-
82555168488
-
Surfactant-free, large-scale, solution-liquid-solid growth of gallium phosphide nanowires and their use for visible-light-driven hydrogen production from water reduction
-
Sun J.W., Liu C., Yang P.D. Surfactant-free, large-scale, solution-liquid-solid growth of gallium phosphide nanowires and their use for visible-light-driven hydrogen production from water reduction. J. Am. Chem. Soc. 2011, 133:19306-19309.
-
(2011)
J. Am. Chem. Soc.
, vol.133
, pp. 19306-19309
-
-
Sun, J.W.1
Liu, C.2
Yang, P.D.3
-
67
-
-
84867460153
-
Zn-doped p-type gallium phosphide nanowire photocathodes from a surfactant-free solution synthesis
-
Liu C., Sun J.W., Tang J.Y., Yang P.D. Zn-doped p-type gallium phosphide nanowire photocathodes from a surfactant-free solution synthesis. Nano Lett. 2012, 12:5407-5411.
-
(2012)
Nano Lett.
, vol.12
, pp. 5407-5411
-
-
Liu, C.1
Sun, J.W.2
Tang, J.Y.3
Yang, P.D.4
-
69
-
-
70450172130
-
Synthesis of TaON nanotube arrays by sonoelectrochemical anodization followed by nitridation: a novel catalyst for photoelectrochemical hydrogen generation from water
-
Banerjee S., Mohapatra S.K., Misra M. Synthesis of TaON nanotube arrays by sonoelectrochemical anodization followed by nitridation: a novel catalyst for photoelectrochemical hydrogen generation from water. Chem. Commun. 2009, 7137-7139.
-
(2009)
Chem. Commun.
, pp. 7137-7139
-
-
Banerjee, S.1
Mohapatra, S.K.2
Misra, M.3
-
70
-
-
84860336470
-
Highly stable water splitting on oxynitride TaON photoanode system under visible light irradiation
-
Higashi M., Domen K., Abe R. Highly stable water splitting on oxynitride TaON photoanode system under visible light irradiation. J. Am. Chem. Soc. 2012, 134:6968-6971.
-
(2012)
J. Am. Chem. Soc.
, vol.134
, pp. 6968-6971
-
-
Higashi, M.1
Domen, K.2
Abe, R.3
-
71
-
-
80053307107
-
5 photoanodes for water splitting under visible light irradiation
-
5 photoanodes for water splitting under visible light irradiation. Energy Environ. Sci. 2011, 4:4138-4147.
-
(2011)
Energy Environ. Sci.
, vol.4
, pp. 4138-4147
-
-
Higashi, M.1
Domen, K.2
Abe, R.3
-
72
-
-
79959495747
-
Atomic layer-deposited tunnel oxide stabilizes silicon photoanodes for water oxidation
-
Chen Y.W., Prange J.D., Duhnen S., Park Y., Gunji M., Chidsey C.E.D., McIntyre P.C. Atomic layer-deposited tunnel oxide stabilizes silicon photoanodes for water oxidation. Nat. Mater. 2011, 10:539-544.
-
(2011)
Nat. Mater.
, vol.10
, pp. 539-544
-
-
Chen, Y.W.1
Prange, J.D.2
Duhnen, S.3
Park, Y.4
Gunji, M.5
Chidsey, C.E.D.6
McIntyre, P.C.7
-
73
-
-
84863084936
-
Nickel oxide functionalized silicon for efficient photo-oxidation of water
-
Sun K., Park N., Sun Z.L., Zhou J.G., Wang J., Pang X.L., Shen S.H., Noh S.Y., Jing Y., Jin S.H., Yu P.K.L., Wang D.L. Nickel oxide functionalized silicon for efficient photo-oxidation of water. Energy Environ. Sci. 2012, 5:7872-7877.
-
(2012)
Energy Environ. Sci.
, vol.5
, pp. 7872-7877
-
-
Sun, K.1
Park, N.2
Sun, Z.L.3
Zhou, J.G.4
Wang, J.5
Pang, X.L.6
Shen, S.H.7
Noh, S.Y.8
Jing, Y.9
Jin, S.H.10
Yu, P.K.L.11
Wang, D.L.12
-
74
-
-
84875180625
-
Photoelectrochemical behavior of n-type Si(100) electrodes coated with thin films of manganese oxide grown by atomic layer deposition
-
Strandwitz N.C., Comstock D.J., Grimm R.L., Nichols-Nielander A.C., Elam J., Lewis N.S. Photoelectrochemical behavior of n-type Si(100) electrodes coated with thin films of manganese oxide grown by atomic layer deposition. J. Phys. Chem. C 2013, 117:4931-4936.
-
(2013)
J. Phys. Chem. C
, vol.117
, pp. 4931-4936
-
-
Strandwitz, N.C.1
Comstock, D.J.2
Grimm, R.L.3
Nichols-Nielander, A.C.4
Elam, J.5
Lewis, N.S.6
-
76
-
-
84855789133
-
Enhanced photoelectrochemical hydrogen production from silicon nanowire array photocathode
-
Oh I., Kye J., Hwang S. Enhanced photoelectrochemical hydrogen production from silicon nanowire array photocathode. Nano Lett. 2012, 12:298-302.
-
(2012)
Nano Lett.
, vol.12
, pp. 298-302
-
-
Oh, I.1
Kye, J.2
Hwang, S.3
-
77
-
-
77954831630
-
Efficient solar hydrogen production by photocatalytic water splitting: From fundamental study to pilot demonstration
-
Jing D.W., Guo L.J., Zhao L.A., Zhang X.M., Liu H.A., Li M.T., Shen S.H., Liu G.J., Hu X.W., Zhang X.H., Zhang K., Ma L.J., Guo P.H. Efficient solar hydrogen production by photocatalytic water splitting: From fundamental study to pilot demonstration. Int. J. Hydrog. Energy 2010, 35:7087-7097.
-
(2010)
Int. J. Hydrog. Energy
, vol.35
, pp. 7087-7097
-
-
Jing, D.W.1
Guo, L.J.2
Zhao, L.A.3
Zhang, X.M.4
Liu, H.A.5
Li, M.T.6
Shen, S.H.7
Liu, G.J.8
Hu, X.W.9
Zhang, X.H.10
Zhang, K.11
Ma, L.J.12
Guo, P.H.13
-
80
-
-
84860372840
-
Nanostructured hematite: synthesis, characterization, charge carrier dynamics, and photoelectrochemical properties
-
Wheeler D.A., Wang G.M., Ling Y.C., Li Y., Zhang J.Z. Nanostructured hematite: synthesis, characterization, charge carrier dynamics, and photoelectrochemical properties. Energy Environ. Sci. 2012, 5:6682-6702.
-
(2012)
Energy Environ. Sci.
, vol.5
, pp. 6682-6702
-
-
Wheeler, D.A.1
Wang, G.M.2
Ling, Y.C.3
Li, Y.4
Zhang, J.Z.5
-
81
-
-
79952553683
-
Metal oxide nanomaterials for solar hydrogen generation from photoelectrochemical water splitting
-
Zhang J.Z. Metal oxide nanomaterials for solar hydrogen generation from photoelectrochemical water splitting. MRS Bull. 2011, 36:48-55.
-
(2011)
MRS Bull.
, vol.36
, pp. 48-55
-
-
Zhang, J.Z.1
-
82
-
-
46749096030
-
Preparation of CdSe quantum dots with full color emission based on a room temperature injection technique
-
Liu L.P., Peng Q., Li Y.D. Preparation of CdSe quantum dots with full color emission based on a room temperature injection technique. Inorg. Chem. 2008, 47:5022-5028.
-
(2008)
Inorg. Chem.
, vol.47
, pp. 5022-5028
-
-
Liu, L.P.1
Peng, Q.2
Li, Y.D.3
-
83
-
-
84878518076
-
Nickel catalyst boosts solar hydrogen generation of CdSe nanocrystals
-
Wang G.M., Li Y. Nickel catalyst boosts solar hydrogen generation of CdSe nanocrystals. ChemCatChem 2013, 5:1294-1295.
-
(2013)
ChemCatChem
, vol.5
, pp. 1294-1295
-
-
Wang, G.M.1
Li, Y.2
-
86
-
-
79951513799
-
Increasing solar absorption for photocatalysis with black hydrogenated titanium dioxide nanocrystals
-
Chen X.B., Liu L., Yu P.Y., Mao S.S. Increasing solar absorption for photocatalysis with black hydrogenated titanium dioxide nanocrystals. Science 2011, 331:746-750.
-
(2011)
Science
, vol.331
, pp. 746-750
-
-
Chen, X.B.1
Liu, L.2
Yu, P.Y.3
Mao, S.S.4
-
87
-
-
33846043147
-
2 narrowed by anion- and cation-doping of titanium dioxide in second-generation photocatalysts?
-
2 narrowed by anion- and cation-doping of titanium dioxide in second-generation photocatalysts?. J. Phys. Chem. B 2006, 110:24287-24293.
-
(2006)
J. Phys. Chem. B
, vol.110
, pp. 24287-24293
-
-
Serpone, N.1
-
89
-
-
33646065037
-
3 photoanodes for efficient water splitting by sunlight: nanostructure-directing effect of Si-doping
-
3 photoanodes for efficient water splitting by sunlight: nanostructure-directing effect of Si-doping. J. Am. Chem. Soc. 2006, 128:4582-4583.
-
(2006)
J. Am. Chem. Soc.
, vol.128
, pp. 4582-4583
-
-
Cesar, I.1
Kay, A.2
Martinez, J.A.G.3
Gratzel, M.4
-
90
-
-
61649119228
-
Influence of feature size, film thickness, and silicon doping on the performance of nanostructured hematite photoanodes for solar water splitting
-
Cesar I., Sivula K., Kay A., Zboril R., Graetzel M. Influence of feature size, film thickness, and silicon doping on the performance of nanostructured hematite photoanodes for solar water splitting. J. Phys. Chem. C 2009, 113:772-782.
-
(2009)
J. Phys. Chem. C
, vol.113
, pp. 772-782
-
-
Cesar, I.1
Sivula, K.2
Kay, A.3
Zboril, R.4
Graetzel, M.5
-
91
-
-
79955704215
-
Photo-assisted electrodeposition of cobalt-phosphate (Co-Pi) catalyst on hematite photoanodes for solar water oxidation
-
Zhong D.K., Cornuz M., Sivula K., Graetzel M., Gamelin D.R. Photo-assisted electrodeposition of cobalt-phosphate (Co-Pi) catalyst on hematite photoanodes for solar water oxidation. Energy Environ. Sci. 2011, 4:1759-1764.
-
(2011)
Energy Environ. Sci.
, vol.4
, pp. 1759-1764
-
-
Zhong, D.K.1
Cornuz, M.2
Sivula, K.3
Graetzel, M.4
Gamelin, D.R.5
-
92
-
-
79957528668
-
Bioinspired molecular co-catalysts bonded to a silicon photocathode for solar hydrogen evolution
-
Hou Y.D., Abrams B.L., Vesborg P.C.K., Bjorketun M.E., Herbst K., Bech L., Setti A.M., Damsgaard C.D., Pedersen T., Hansen O., Rossmeisl J., Dahl S., Norskov J.K., Chorkendorff I. Bioinspired molecular co-catalysts bonded to a silicon photocathode for solar hydrogen evolution. Nat. Mater. 2011, 10:434-438.
-
(2011)
Nat. Mater.
, vol.10
, pp. 434-438
-
-
Hou, Y.D.1
Abrams, B.L.2
Vesborg, P.C.K.3
Bjorketun, M.E.4
Herbst, K.5
Bech, L.6
Setti, A.M.7
Damsgaard, C.D.8
Pedersen, T.9
Hansen, O.10
Rossmeisl, J.11
Dahl, S.12
Norskov, J.K.13
Chorkendorff, I.14
-
93
-
-
80053900165
-
High-performance silicon nanowire array photoelectrochemical solar cells through surface passivation and modification
-
Wang X., Peng K.Q., Pan X.J., Chen X., Yang Y., Li L., Meng X.M., Zhang W.J., Lee S.T. High-performance silicon nanowire array photoelectrochemical solar cells through surface passivation and modification. Angew. Chem. Int. Ed. 2011, 50:9861-9865.
-
(2011)
Angew. Chem. Int. Ed.
, vol.50
, pp. 9861-9865
-
-
Wang, X.1
Peng, K.Q.2
Pan, X.J.3
Chen, X.4
Yang, Y.5
Li, L.6
Meng, X.M.7
Zhang, W.J.8
Lee, S.T.9
-
94
-
-
84865956357
-
3 photoanodes for solar water splitting
-
3 photoanodes for solar water splitting. Proc. Natl. Acad. Sci. U.S.A. 2012, 109:15640-15645.
-
(2012)
Proc. Natl. Acad. Sci. U.S.A.
, vol.109
, pp. 15640-15645
-
-
Barroso, M.1
Mesa, C.A.2
Pendlebury, S.R.3
Cowan, A.J.4
Hisatomi, T.5
Sivula, K.6
Gratzel, M.7
Klug, D.R.8
Durrant, J.R.9
-
95
-
-
84874603432
-
Water oxidation at hematite photoelectrodes with an iridium-based catalyst
-
Badia-Bou L., Mas-Marza E., Rodenas P., Barea E.M., Fabregat-Santiago F., Gimenez S., Peris E., Bisquert J. Water oxidation at hematite photoelectrodes with an iridium-based catalyst. J. Phys. Chem. C 2013, 117:3826-3833.
-
(2013)
J. Phys. Chem. C
, vol.117
, pp. 3826-3833
-
-
Badia-Bou, L.1
Mas-Marza, E.2
Rodenas, P.3
Barea, E.M.4
Fabregat-Santiago, F.5
Gimenez, S.6
Peris, E.7
Bisquert, J.8
-
96
-
-
84865604616
-
Plasmon inducing effects for enhanced photoelectrochemical water splitting: X-ray absorption approach to electronic structures
-
Chen H.M., Chen C.K., Chen C.J., Cheng L.C., Wu P.C., Cheng B.H., Ho Y.Z., Tseng M.L., Hsu Y.Y., Chan T.S., Lee J.F., Liu R.S., Tsai D.P. Plasmon inducing effects for enhanced photoelectrochemical water splitting: X-ray absorption approach to electronic structures. ACS Nano 2012, 6:7362-7372.
-
(2012)
ACS Nano
, vol.6
, pp. 7362-7372
-
-
Chen, H.M.1
Chen, C.K.2
Chen, C.J.3
Cheng, L.C.4
Wu, P.C.5
Cheng, B.H.6
Ho, Y.Z.7
Tseng, M.L.8
Hsu, Y.Y.9
Chan, T.S.10
Lee, J.F.11
Liu, R.S.12
Tsai, D.P.13
-
98
-
-
84873947474
-
Plasmon-enhanced photocurrent generation and water oxidation with a gold nanoisland-loaded titanium dioxide photoelectrode
-
Shi X., Ueno K., Takabayashi N., Misawa H. Plasmon-enhanced photocurrent generation and water oxidation with a gold nanoisland-loaded titanium dioxide photoelectrode. J. Phys. Chem. C 2013, 117:2494-2499.
-
(2013)
J. Phys. Chem. C
, vol.117
, pp. 2494-2499
-
-
Shi, X.1
Ueno, K.2
Takabayashi, N.3
Misawa, H.4
-
103
-
-
79955925633
-
Sn-doped hematite nanostructures for photoelectrochemical water splitting
-
Ling Y.C., Wang G.M., Wheeler D.A., Zhang J.Z., Li Y. Sn-doped hematite nanostructures for photoelectrochemical water splitting. Nano Lett. 2011, 11:2119-2125.
-
(2011)
Nano Lett.
, vol.11
, pp. 2119-2125
-
-
Ling, Y.C.1
Wang, G.M.2
Wheeler, D.A.3
Zhang, J.Z.4
Li, Y.5
-
104
-
-
84867515018
-
Facile fabrication of tin-doped hematite photoelectrodes - effect of doping on magnetic properties and performance for light-induced water splitting
-
Frydrych J., Machala L., Tucek J., Siskova K., Filip J., Pechousek J., Safarova K., Vondracek M., Seo J.H., Schneeweiss O., Gratzel M., Sivula K., Zboril R. Facile fabrication of tin-doped hematite photoelectrodes - effect of doping on magnetic properties and performance for light-induced water splitting. J. Mater. Chem. 2012, 22:23232-23239.
-
(2012)
J. Mater. Chem.
, vol.22
, pp. 23232-23239
-
-
Frydrych, J.1
Machala, L.2
Tucek, J.3
Siskova, K.4
Filip, J.5
Pechousek, J.6
Safarova, K.7
Vondracek, M.8
Seo, J.H.9
Schneeweiss, O.10
Gratzel, M.11
Sivula, K.12
Zboril, R.13
-
107
-
-
79952142755
-
2 nanosheets with exposed {001} facets: synthesis, characterization and visible-light photocatalytic activity, Phys
-
2 nanosheets with exposed {001} facets: synthesis, characterization and visible-light photocatalytic activity, Phys. Chem. Chem. Phys. 2011, 13:4853-4861.
-
(2011)
Chem. Chem. Phys.
, vol.13
, pp. 4853-4861
-
-
Xiang, Q.J.1
Yu, J.G.2
Jaroniec, M.3
-
108
-
-
79951519448
-
2 photocatalysts: a combined solid-state NMR and theoretical calculation study
-
2 photocatalysts: a combined solid-state NMR and theoretical calculation study. J. Phys. Chem. C 2011, 115:2709-2719.
-
(2011)
J. Phys. Chem. C
, vol.115
, pp. 2709-2719
-
-
Feng, N.D.1
Zheng, A.M.2
Wang, Q.A.3
Ren, P.P.4
Gao, X.Z.5
Liu, S.B.6
Shen, Z.R.7
Chen, T.H.8
Deng, F.9
-
112
-
-
23744492078
-
2 films with 2eV optical gaps
-
2 films with 2eV optical gaps. Adv. Mater. 2005, 17:1842-1846.
-
(2005)
Adv. Mater.
, vol.17
, pp. 1842-1846
-
-
Barborini, E.1
Conti, A.M.2
Kholmanov, I.3
Piseri, P.4
Podesta, A.5
Milani, P.6
Cepek, C.7
Sakho, O.8
Macovez, R.9
Sancrotti, M.10
-
118
-
-
13844270644
-
Efficient visible-light-induced photocatalytic disinfection on sulfur-doped nanocrystalline titania
-
Yu J.C., Ho W.K., Yu J.G., Yip H., Wong P.K., Zhao J.C. Efficient visible-light-induced photocatalytic disinfection on sulfur-doped nanocrystalline titania. Environ. Sci. Technol. 2005, 39:1175-1179.
-
(2005)
Environ. Sci. Technol.
, vol.39
, pp. 1175-1179
-
-
Yu, J.C.1
Ho, W.K.2
Yu, J.G.3
Yip, H.4
Wong, P.K.5
Zhao, J.C.6
-
121
-
-
84858248062
-
2 nanotube arrays for supercapacitors
-
2 nanotube arrays for supercapacitors. Nano Lett. 2012, 12:1690-1696.
-
(2012)
Nano Lett.
, vol.12
, pp. 1690-1696
-
-
Lu, X.H.1
Wang, G.M.2
Zhai, T.3
Yu, M.H.4
Gan, J.Y.5
Tong, Y.X.6
Li, Y.7
-
122
-
-
84863925137
-
Efficient photocatalytic hydrogen evolution over hydrogenated ZnO nanorod arrays
-
Lu X.H., Wang G.M., Xie S.L., Shi J.Y., Li W., Tong Y.X., Li Y. Efficient photocatalytic hydrogen evolution over hydrogenated ZnO nanorod arrays. Chem. Commun. 2012, 48:7717-7719.
-
(2012)
Chem. Commun.
, vol.48
, pp. 7717-7719
-
-
Lu, X.H.1
Wang, G.M.2
Xie, S.L.3
Shi, J.Y.4
Li, W.5
Tong, Y.X.6
Li, Y.7
-
123
-
-
84878344853
-
Computational and photoelectrochemical study of hydrogenated bismuth vanadate
-
Wang G.M., Ling Y.C., Lu X.H., Qian F., Tong Y.X., Zhang J., Lordi V., Leao C.R., Li Y. Computational and photoelectrochemical study of hydrogenated bismuth vanadate. J. Phys. Chem. C 2013, 117:10957-10964.
-
(2013)
J. Phys. Chem. C
, vol.117
, pp. 10957-10964
-
-
Wang, G.M.1
Ling, Y.C.2
Lu, X.H.3
Qian, F.4
Tong, Y.X.5
Zhang, J.6
Lordi, V.7
Leao, C.R.8
Li, Y.9
-
124
-
-
84859997848
-
The influence of oxygen content on the thermal activation of hematite nanowires
-
Ling Y.C., Wang G.M., Reddy J., Wang C.C., Zhang J.Z., Li Y. The influence of oxygen content on the thermal activation of hematite nanowires. Angew. Chem. Int. Ed. 2012, 51:4074-4079.
-
(2012)
Angew. Chem. Int. Ed.
, vol.51
, pp. 4074-4079
-
-
Ling, Y.C.1
Wang, G.M.2
Reddy, J.3
Wang, C.C.4
Zhang, J.Z.5
Li, Y.6
-
125
-
-
75749092622
-
3 heterostructure nanotube arrays for improved photoelectrochemical performance
-
3 heterostructure nanotube arrays for improved photoelectrochemical performance. ACS Nano 2010, 4:387-395.
-
(2010)
ACS Nano
, vol.4
, pp. 387-395
-
-
Zhang, J.1
Bang, J.H.2
Tang, C.C.3
Kamat, P.V.4
-
126
-
-
67650681824
-
3 photoanodes for water splitting: a host scaffold, guest absorber approach
-
3 photoanodes for water splitting: a host scaffold, guest absorber approach. Chem. Mater. 2009, 21:2862-2867.
-
(2009)
Chem. Mater.
, vol.21
, pp. 2862-2867
-
-
Sivula, K.1
Le Formal, F.2
Gratzel, M.3
-
127
-
-
84870928057
-
4 core/shell heterojunction array for efficient photoelectrochemical water splitting
-
4 core/shell heterojunction array for efficient photoelectrochemical water splitting. Nano Lett. 2012, 12:6464-6473.
-
(2012)
Nano Lett.
, vol.12
, pp. 6464-6473
-
-
Hou, Y.1
Zuo, F.2
Dagg, A.3
Feng, P.Y.4
-
129
-
-
84876029484
-
4/TaON heterojunction photoanode for photoelectrochemical water oxidation
-
4/TaON heterojunction photoanode for photoelectrochemical water oxidation. J. Am. Chem. Soc. 2013, 135:5375-5383.
-
(2013)
J. Am. Chem. Soc.
, vol.135
, pp. 5375-5383
-
-
Kim, E.S.1
Nishimura, N.2
Magesh, G.3
Kim, J.Y.4
Jang, J.5
Jun, H.6
Kubota, J.7
Domen, K.8
Lee, J.S.9
-
130
-
-
79958831682
-
Controlling the synthesis and assembly of silver nanostructures for plasmonic applications
-
Rycenga M., Cobley C.M., Zeng J., Li W.Y., Moran C.H., Zhang Q., Qin D., Xia Y.N. Controlling the synthesis and assembly of silver nanostructures for plasmonic applications. Chem. Rev. 2011, 111:3669-3712.
-
(2011)
Chem. Rev.
, vol.111
, pp. 3669-3712
-
-
Rycenga, M.1
Cobley, C.M.2
Zeng, J.3
Li, W.Y.4
Moran, C.H.5
Zhang, Q.6
Qin, D.7
Xia, Y.N.8
-
131
-
-
82055161674
-
Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy
-
Linic S., Christopher P., Ingram D.B. Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy. Nat. Mater. 2011, 10:911-921.
-
(2011)
Nat. Mater.
, vol.10
, pp. 911-921
-
-
Linic, S.1
Christopher, P.2
Ingram, D.B.3
-
132
-
-
58249124542
-
Shape-controlled synthesis of metal nanocrystals: simple chemistry meets complex physics?
-
Xia Y.N., Xiong Y.J., Lim B., Skrabalak S.E. Shape-controlled synthesis of metal nanocrystals: simple chemistry meets complex physics?. Angew. Chem. Int. Ed. 2009, 48:60-103.
-
(2009)
Angew. Chem. Int. Ed.
, vol.48
, pp. 60-103
-
-
Xia, Y.N.1
Xiong, Y.J.2
Lim, B.3
Skrabalak, S.E.4
-
135
-
-
79952605851
-
Plasmon resonant enhancement of photocatalytic water splitting under visible illumination
-
Liu Z.W., Hou W.B., Pavaskar P., Aykol M., Cronin S.B. Plasmon resonant enhancement of photocatalytic water splitting under visible illumination. Nano Lett. 2011, 11:1111-1116.
-
(2011)
Nano Lett.
, vol.11
, pp. 1111-1116
-
-
Liu, Z.W.1
Hou, W.B.2
Pavaskar, P.3
Aykol, M.4
Cronin, S.B.5
-
136
-
-
19744378882
-
2 films loaded with gold nanoparticles
-
2 films loaded with gold nanoparticles. J. Am. Chem. Soc. 2005, 127:7632-7637.
-
(2005)
J. Am. Chem. Soc.
, vol.127
, pp. 7632-7637
-
-
Tian, Y.1
Tatsuma, T.2
-
137
-
-
58049202885
-
Visible light-induced photocatalytic reaction of gold-modified titanium(IV) oxide particles: action spectrum analysis
-
Kowalska E., Abe R., Ohtani B. Visible light-induced photocatalytic reaction of gold-modified titanium(IV) oxide particles: action spectrum analysis. Chem. Commun. 2009, 241-243.
-
(2009)
Chem. Commun.
, pp. 241-243
-
-
Kowalska, E.1
Abe, R.2
Ohtani, B.3
-
138
-
-
77950949107
-
Visible-light-induced photocatalysis through surface plasmon excitation of gold on titania surfaces
-
Kowalska E., Mahaney O.O.P., Abe R., Ohtani B. Visible-light-induced photocatalysis through surface plasmon excitation of gold on titania surfaces. Phys. Chem. Chem. Phys. 2010, 12:2344-2355.
-
(2010)
Phys. Chem. Chem. Phys.
, vol.12
, pp. 2344-2355
-
-
Kowalska, E.1
Mahaney, O.O.P.2
Abe, R.3
Ohtani, B.4
-
139
-
-
38949188902
-
A plasmonic photocatalyst consisting of sliver nanoparticles embedded in titanium dioxide
-
Awazu K., Fujimaki M., Rockstuhl C., Tominaga J., Murakami H., Ohki Y., Yoshida N., Watanabe T. A plasmonic photocatalyst consisting of sliver nanoparticles embedded in titanium dioxide. J. Am. Chem. Soc. 2008, 130:1676-1680.
-
(2008)
J. Am. Chem. Soc.
, vol.130
, pp. 1676-1680
-
-
Awazu, K.1
Fujimaki, M.2
Rockstuhl, C.3
Tominaga, J.4
Murakami, H.5
Ohki, Y.6
Yoshida, N.7
Watanabe, T.8
-
140
-
-
78650434116
-
Titania supported gold nanoparticles as photocatalyst
-
Primo A., Corma A., Garcia H. Titania supported gold nanoparticles as photocatalyst. Phys. Chem. Chem. Phys. 2011, 13:886-910.
-
(2011)
Phys. Chem. Chem. Phys.
, vol.13
, pp. 886-910
-
-
Primo, A.1
Corma, A.2
Garcia, H.3
-
141
-
-
18044387790
-
Chemistry and properties of nanocrystals of different shapes
-
Burda C., Chen X.B., Narayanan R., El-Sayed M.A. Chemistry and properties of nanocrystals of different shapes. Chem. Rev. 2005, 105:1025-1102.
-
(2005)
Chem. Rev.
, vol.105
, pp. 1025-1102
-
-
Burda, C.1
Chen, X.B.2
Narayanan, R.3
El-Sayed, M.A.4
-
142
-
-
22444440911
-
Synthesis and optical properties of silver nanoparticles and arrays
-
Evanoff D.D., Chumanov G. Synthesis and optical properties of silver nanoparticles and arrays. ChemPhysChem 2005, 6:1221-1231.
-
(2005)
ChemPhysChem
, vol.6
, pp. 1221-1231
-
-
Evanoff, D.D.1
Chumanov, G.2
-
143
-
-
33746837228
-
Bioconjugated Ag nanoparticles and CdTe nanowires: metamaterials with field-enhanced light absorption
-
Lee J., Javed T., Skeini T., Govorov A.O., Bryant G.W., Kotov N.A. Bioconjugated Ag nanoparticles and CdTe nanowires: metamaterials with field-enhanced light absorption. Angew. Chem. Int. Ed. 2006, 45:4819-4823.
-
(2006)
Angew. Chem. Int. Ed.
, vol.45
, pp. 4819-4823
-
-
Lee, J.1
Javed, T.2
Skeini, T.3
Govorov, A.O.4
Bryant, G.W.5
Kotov, N.A.6
-
144
-
-
33645057911
-
Enhancement and quenching of single-molecule fluorescence
-
Anger P., Bharadwaj P., Novotny L. Enhancement and quenching of single-molecule fluorescence. Phys. Rev. Lett. 2006, 96:4.
-
(2006)
Phys. Rev. Lett.
, vol.96
, pp. 4
-
-
Anger, P.1
Bharadwaj, P.2
Novotny, L.3
-
145
-
-
84881567290
-
2 nanowires exhibiting photoactivity across entire UV-visible region for photoelectrochemical water splitting
-
2 nanowires exhibiting photoactivity across entire UV-visible region for photoelectrochemical water splitting. Nano Lett. 2013, 13:3817-3823.
-
(2013)
Nano Lett.
, vol.13
, pp. 3817-3823
-
-
Pu, Y.C.1
Wang, G.M.2
Chang, K.D.3
Ling, Y.C.4
Lin, Y.K.5
Fitzmorris, B.C.6
Liu, C.M.7
Hsu, Y.J.8
Li, Y.9
-
146
-
-
77956018755
-
Light-induced water splitting with hematite: improved nanostructure and iridium oxide catalysis
-
Tilley S.D., Cornuz M., Sivula K., Gratzel M. Light-induced water splitting with hematite: improved nanostructure and iridium oxide catalysis. Angew. Chem. Int. Ed. 2010, 49:6405-6408.
-
(2010)
Angew. Chem. Int. Ed.
, vol.49
, pp. 6405-6408
-
-
Tilley, S.D.1
Cornuz, M.2
Sivula, K.3
Gratzel, M.4
-
147
-
-
79957496297
-
Highly active oxide photocathode for photoelectrochemical water reduction
-
Paracchino A., Laporte V., Sivula K., Gratzel M., Thimsen E. Highly active oxide photocathode for photoelectrochemical water reduction. Nat. Mater. 2011, 10:456-461.
-
(2011)
Nat. Mater.
, vol.10
, pp. 456-461
-
-
Paracchino, A.1
Laporte, V.2
Sivula, K.3
Gratzel, M.4
Thimsen, E.5
-
148
-
-
77950271962
-
3 composite photoanodes: oxygen evolution and resolution of a kinetic bottleneck
-
3 composite photoanodes: oxygen evolution and resolution of a kinetic bottleneck. J. Am. Chem. Soc. 2010, 132:4202-4207.
-
(2010)
J. Am. Chem. Soc.
, vol.132
, pp. 4202-4207
-
-
Zhong, D.K.1
Gamelin, D.R.2
-
149
-
-
84867641530
-
Hydrogen-evolution characteristics of Ni-Mo-coated, radial junction, n(+)p-silicon microwire array photocathodes
-
Warren E.L., McKone J.R., Atwater H.A., Gray H.B., Lewis N.S. Hydrogen-evolution characteristics of Ni-Mo-coated, radial junction, n(+)p-silicon microwire array photocathodes. Energy Environ. Sci. 2012, 5:9653-9661.
-
(2012)
Energy Environ. Sci.
, vol.5
, pp. 9653-9661
-
-
Warren, E.L.1
McKone, J.R.2
Atwater, H.A.3
Gray, H.B.4
Lewis, N.S.5
-
150
-
-
84867521098
-
P-type InP nanopillar photocathodes for efficient solar-driven hydrogen production
-
Lee M.H., Takei K., Zhang J.J., Kapadia R., Zheng M., Chen Y.Z., Nah J., Matthews T.S., Chueh Y.L., Ager J.W., Javey A. p-type InP nanopillar photocathodes for efficient solar-driven hydrogen production. Angew. Chem. Int. Ed. 2012, 51:10760-10764.
-
(2012)
Angew. Chem. Int. Ed.
, vol.51
, pp. 10760-10764
-
-
Lee, M.H.1
Takei, K.2
Zhang, J.J.3
Kapadia, R.4
Zheng, M.5
Chen, Y.Z.6
Nah, J.7
Matthews, T.S.8
Chueh, Y.L.9
Ager, J.W.10
Javey, A.11
-
151
-
-
84874165017
-
A noble-metal-free hydrogen evolution catalyst grafted to visible light-absorbing semiconductors
-
Moore G.F., Sharp I.D. A noble-metal-free hydrogen evolution catalyst grafted to visible light-absorbing semiconductors. J. Phys. Chem. Lett. 2013, 4:568-572.
-
(2013)
J. Phys. Chem. Lett.
, vol.4
, pp. 568-572
-
-
Moore, G.F.1
Sharp, I.D.2
-
152
-
-
77958125180
-
Photoelectrochemical water splitting: silicon photocathodes for hydrogen evolution
-
77701F-1
-
Warren E.L., Boettcher S.W., McKone J.R., Lewis N.S. Photoelectrochemical water splitting: silicon photocathodes for hydrogen evolution. Proc. SPIE 2010, 7770. 77701F-1.
-
(2010)
Proc. SPIE
, vol.7770
-
-
Warren, E.L.1
Boettcher, S.W.2
McKone, J.R.3
Lewis, N.S.4
-
153
-
-
78449296257
-
Solar-driven microbial photoelectrochemical cells with a nanowire photocathode
-
Qian F., Wang G.M., Li Y. Solar-driven microbial photoelectrochemical cells with a nanowire photocathode. Nano Lett. 2010, 10:4686-4691.
-
(2010)
Nano Lett.
, vol.10
, pp. 4686-4691
-
-
Qian, F.1
Wang, G.M.2
Li, Y.3
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