Environmental Engineering Reference
In-Depth Information
87. Sun JW, Liu C, Yang PD (2011) 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 133(48):19306-19309
88. Sun K, Jing Y, Li C, Zhang XF, Aguinaldo R, Kargar A, Madsen K, Banu K, Zhou YC,
Bando Y, Liu ZW, Wang DL (2012) 3D branched nanowire heterojunction photoelectrodes
for high-efficiency solar water splitting and H 2 generation. Nanoscale 4(5):1515-1521
89. Tachibana Y, Vayssieres L, Durrant JR (2012) Artificial photosynthesis for solar water-
splitting. Nat Photonics 6(8):511-518
90. Tilley SD, Cornuz M, Sivula K, Gratzel M (2010) Light-induced water splitting with
hematite: improved nanostructure and iridium oxide catalysis. Angew Chem-Int Edit
49(36):6405-6408
91. Tsuchiya H, Macak JM, Taveira L, Balaur E, Ghicov A, Sirotna K, Schmuki P (2005) Self-
organized
TiO 2
nanotubes
prepared
in
ammonium
fluoride
containing
acetic
acid
electrolytes. Electrochem Commun 7(6):576-580
92. Walter MG, Warren EL, McKone JR, Boettcher SW, Mi QX, Santori EA, Lewis NS (2010)
Solar water splitting cells. Chem Rev 110(11):6446-6473
93. Wang DF, Pierre A, Kibria MG, Cui K, Han XG, Bevan KH, Guo H, Paradis S, Hakima AR,
Mi ZT (2011) Wafer-level photocatalytic water splitting on GaN nanowire arrays grown by
molecular beam epitaxy. Nano Lett 11(6):2353-2357
94. Wang
G,
Li
Y
(2013)
Nickel
catalyst
boosts
solar
hydrogen
generation
of
CdSe
nanocrystals. ChemCatChem 5(6):1294-1295
95. Wang G, Ling Y, Lu XH, Qian F, Tong YX, Zhang JZ, Lordi V, Leao CR, Li Y (2013)
Computational and photoelectrochemical study of hydrogenated bismuth vanadate. J Phys
Chem C 117(21):10957-10964
96. Wang GM, Ling YC, Li Y (2012) Oxygen-deficient metal oxide nanostructures for
photoelectrochemical water oxidation and other applications. Nanoscale 4(21):6682-6691
97. Wang GM, Ling YC, Lu XH, Wang HY, Qian F, Tong YX, Li Y (2012) Solar driven
hydrogen releasing from urea and human urine. Energy Environ Sci 5(8):8215-8219
98. Wang GM, Ling YC, Lu XH, Zhai T, Qian F, Tong YX, Li Y (2013) A mechanistic study
into the catalytic effect of Ni(OH) 2 on hematite for photoelectrochemical water oxidation.
Nanoscale 5(10):4129-4133
99. Wang GM, Ling YC, Wang HY, Yang XY, Wang CC, Zhang JZ, Li Y (2012) Hydrogen-
treated WO 3 nanoflakes show enhanced photostability. Energy Environ Sci 5(3):6180-6187
100. Wang GM, Ling YC, Wheeler DA, George KEN, Horsley K, Heske C, Zhang JZ, Li Y
(2011) Facile synthesis of highly photoactive alpha-Fe 2 O 3 -based films for water oxidation.
Nano Lett 11(8):3503-3509
101. Wang GM, Wang HY, Ling YC, Tang YC, Yang XY, Fitzmorris RC, Wang CC, Zhang JZ,
Li
Y
(2011)
Hydrogen-treated
TiO 2 nanowire
arrays
for
photoelectrochemical
water
splitting. Nano Lett 11(7):3026-3033
102. Wang GM, Yang XY, Qian F, Zhang JZ, Li Y (2010) Double-sided CdS and CdSe quantum
dot Co-sensitized ZnO nanowire arrays for photoelectrochemical hydrogen generation.
Nano Lett 10(3):1088-1092
103. Wang HY, Wang GM, Ling YC, Lepert M, Wang CC, Zhang JZ, Li Y (2012)
Photoelectrochemical study of oxygen deficient TiO 2 nanowire arrays with CdS quantum
dot sensitization. Nanoscale 4(5):1463-1466
104. Wei W, Lee K, Shaw S, Schmuki P (2012) Anodic formation of high aspect ratio, self-
ordered Nb 2 O 5 nanotubes. Chem Commun 48(35):4244-4246
105. Wheeler DA, Wang GM, Ling YC, Li Y, Zhang JZ (2012) Nanostructured hematite:
synthesis, characterization, charge carrier dynamics, and photoelectrochemical properties.
Energy Environ Sci 5(5):6682-6702
106. Widenkvist E, Quinlan RA, Holloway BC, Grennberg H, Jansson U (2008) Synthesis of
nanostructured tungsten oxide thin films. Cryst Growth Des 8(10):3750-3753
Search WWH ::




Custom Search