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- ¸½¼þ 1 : Electrochemical Photolysis of Water at a Semiconductor Electrode.pdf
2012-04-24 14:48:31, 208.48 K
- ¸½¼þ 2 : A metal-free polymeric photocatalyst for hydrogen production from water under visible light.pdf
2012-04-24 14:48:38, 670.97 K
- ¸½¼þ 3 : Anatase TiO2 single crystals with a large percentage of reactive facets.pdf
2012-04-24 14:48:40, 579.13 K
- ¸½¼þ 4 : Highly active oxide photocathode for photoelectrochemical water reduction.pdf
2012-04-24 14:48:41, 366.69 K
- ¸½¼þ 5 : Highly efficient photocatalytic oxygenation reactions using water as an oxygen source.pdf
2012-04-24 14:48:41, 247.54 K
- ¸½¼þ 6 : Increasing Solar Absorption for Photocatalysis with Black Hydrogenated Titanium Dioxide Nanocrystals.pdf
2012-04-24 14:48:45, 1.4 M
- ¸½¼þ 7 : Photoelectrochemical cells.pdf
2012-04-24 14:48:46, 218.64 K
- ¸½¼þ 8 : Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy.pdf
2012-04-24 14:48:49, 1.66 M
- ¸½¼þ 9 : Tandem colloidal quantum dot solar cells employing a graded recombination layer.pdf
2012-04-24 14:48:51, 364.14 K
- ¸½¼þ 10 : Visible-Light Photocatalysis in Nitrogen-Doped Titanium Oxides.pdf
2012-04-24 14:48:54, 384.88 K
- ¸½¼þ 11 : Atomic layer-deposited tunnel oxide stabilizes silicon photoanodes for water oxidation.pdf
2012-04-24 14:52:25, 512.8 K
- ¸½¼þ 12 : Photocatalyst releasing hydrogen from water.pdf
2012-04-24 14:52:26, 161.13 K
- ¸½¼þ 13 : Photocatalysts£º Closing the gap.pdf
2012-04-24 14:52:27, 166.2 K
- ¸½¼þ 14 : Photochemistry£º Scrambled by the Sun.pdf
2012-04-24 14:52:28, 207.42 K
- ¸½¼þ 15 : Photoelectrochemical complexes for solar energy conversion that chemically and autonomously regenerate.pdf
2012-04-24 14:52:35, 3.08 M
- ¸½¼þ 16 : The effect of gold loading and particle size on photocatalytic hydrogen production from ethanol over Au-TiO2 nanoparticles.pdf
2012-04-24 14:52:37, 935.94 K
- ¸½¼þ 17 : Wireless Solar Water Splitting Using Silicon-Based Semiconductors and Earth-Abundant Catalysts.pdf
2012-04-24 14:52:40, 571.15 K