Found: 24
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Effect of Structural Parameters of TiO<sub>2</sub> Nanotube Arrays upon Their Photocatalytic/Photoelectrocatalytic Performance.
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- Chinese Journal of Chemistry, 2011, v. 29, n. 11, p. 2236, doi. 10.1002/cjoc.201180386
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- Article
Comparison of photoelectrochemical properties of TiO<sub>2</sub>-nanotube-array photoanode prepared by anodization in different electrolyte.
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- Environmental Chemistry Letters, 2009, v. 7, n. 4, p. 363, doi. 10.1007/s10311-008-0180-z
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- Article
The Promotion Effect and Mechanism of Methanoic Acid on the Photoelectrocatalytic Degradation of Fulvic Acid.
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- Journal of Chemistry, 2016, p. 1, doi. 10.1155/2016/7639864
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- Article
Simulation and engineering demonstration of the advanced treatment of rainy overflow wastewater using a combined system of storage tank‐wastewater treatment plant‐wetland.
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- Water Environment Research (10614303), 2020, v. 92, n. 7, p. 1057, doi. 10.1002/wer.1301
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- Article
TiO<sub>2</sub> Nanotube Sensor for Online Chemical Oxygen Demand Determination in Conjunction with Flow Injection Technique.
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- Water Environment Research (10614303), 2014, v. 86, n. 6, p. 532, doi. 10.2175/106143014X13975035524943
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- Article
Photoelectrocatalytic Performance of Benzoic Acid on TiO<sub>2</sub> Nanotube Array Electrodes.
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- International Journal of Photoenergy, 2013, p. 1, doi. 10.1155/2013/567426
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- Article
Enhanced photoelectrocatalytic performance of nanoporous WO photoanode by modification of cobalt-phosphate (Co-Pi) catalyst.
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- Journal of Solid State Electrochemistry, 2014, v. 18, n. 1, p. 157, doi. 10.1007/s10008-013-2228-7
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- Article
Adsorption and photoelectrocatalytic characteristics of organics on TiO nanotube arrays.
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- Journal of Solid State Electrochemistry, 2012, v. 16, n. 12, p. 3907, doi. 10.1007/s10008-012-1837-x
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- Article
Keto-anthraquinone covalent organic framework for H<sub>2</sub>O<sub>2</sub> photosynthesis with oxygen and alkaline water.
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- Nature Communications, 2024, v. 15, n. 1, p. 1, doi. 10.1038/s41467-024-47023-y
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- Article
A New Method for the Determination of Sulfide Malodorous Component by Dielectric Barrier Discharge-Optical Emission Spectroscopy.
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- Environmental Science & Technology (10036504), 2021, v. 44, n. 12, p. 77, doi. 10.19672/j.cnki.1003-6504.1560.21.338
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- Article
Efficient Degradation of Refractory Organics Using Sulfate Radicals Generated Directly from WO<sub>3</sub> Photoelectrode and the Catalytic Reaction of Sulfate.
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- Catalysts (2073-4344), 2017, v. 7, n. 11, p. 346, doi. 10.3390/catal7110346
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- Article
WO<sub>3</sub>/W Nanopores Sensor for Chemical Oxygen Demand (COD) Determination under Visible Light.
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- Sensors (14248220), 2014, v. 14, n. 6, p. 10680, doi. 10.3390/s140610680
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- Article
Magnetically separable maghemite/montmorillonite composite as an efficient heterogeneous Fenton-like catalyst for phenol degradation.
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- Environmental Science & Pollution Research, 2017, v. 24, n. 2, p. 1926, doi. 10.1007/s11356-016-7866-8
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- Article
CoN<sub>1</sub>O<sub>2</sub> Single‐Atom Catalyst for Efficient Peroxymonosulfate Activation and Selective Cobalt(IV)=O Generation.
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- Angewandte Chemie, 2023, v. 135, n. 27, p. 1, doi. 10.1002/ange.202303267
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- Article
CoN<sub>1</sub>O<sub>2</sub> Single‐Atom Catalyst for Efficient Peroxymonosulfate Activation and Selective Cobalt(IV)=O Generation.
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- Angewandte Chemie International Edition, 2023, v. 62, n. 27, p. 1, doi. 10.1002/anie.202303267
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- Article
BiVO<sub>4</sub> Photoanode with Exposed (040) Facets for Enhanced Photoelectrochemical Performance.
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- Nano-Micro Letters, 2018, v. 10, n. 1, p. 1, doi. 10.1007/s40820-017-0163-3
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- Article
BiVO/TiO(N) Nanotubes Heterojunction Photoanode for Highly Efficient Photoelectrocatalytic Applications.
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- Nano-Micro Letters, 2017, v. 9, n. 2, p. 1, doi. 10.1007/s40820-016-0115-3
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- Article
The Promotion Effect of Low-Molecular Hydroxyl Compounds on the Nano-Photoelectrocatalytic Degradation of Fulvic Acid and Mechanism.
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- Nano-Micro Letters, 2016, v. 8, n. 4, p. 320, doi. 10.1007/s40820-016-0091-7
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- Article
The Inhibition Effect of Tert-Butyl Alcohol on the TiO Nano Assays Photoelectrocatalytic Degradation of Different Organics and Its Mechanism.
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- Nano-Micro Letters, 2016, v. 8, n. 3, p. 221, doi. 10.1007/s40820-015-0080-2
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- Article
RhB Adsorption Performance of Magnetic Adsorbent Fe<sub>3</sub>O<sub>4</sub>/RGO Composite and Its Regeneration through A Fenton-like Reaction.
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- Nano-Micro Letters, 2014, v. 6, n. 2, p. 125, doi. 10.1007/bf03353776
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- Article
The formation mechanism of titania nanotube arrays in hydrofluoric acid electrolyte.
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- Journal of Materials Science, 2008, v. 43, n. 6, p. 1880, doi. 10.1007/s10853-007-2418-8
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- Article
Efficient Hydrogen Generation and Total Nitrogen Removal for Urine Treatment in a Neutral Solution Based on a Self-Driving Nano Photoelectrocatalytic System.
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- Nanomaterials (2079-4991), 2021, v. 11, n. 11, p. 2777, doi. 10.3390/nano11112777
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- Article
Self-Biasing Photoelectrochemical Cell for Spontaneous Overall Water Splitting under Visible-Light Illumination.
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- ChemSusChem, 2013, v. 6, n. 7, p. 1276, doi. 10.1002/cssc.201200936
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- Article
EFFECTS OF CHLORINE IONS ON THE PHOTOELECTRO-CATALYTIC DEGRADATION OF ORGANICS USING HIGHLY ORDERED TiO<sub>2</sub> NANOTUBE ARRAYS.
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- Environmental Engineering & Management Journal (EEMJ), 2013, v. 12, n. 9, p. 1875, doi. 10.30638/eemj.2013.231
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- Article