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Regulation of Photo-Generated Carrier Behavior Based on Positive Bias Voltage for Enhanced Photo-Fenton

https://doi.org/10.2139/ssrn.4116180
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Octahedral Cu2O-modified TiO2 nanotube arrays for efficient photocatalytic reduction of CO2
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Highly efficient metal-free electro-Fenton degradation of organic contaminants on a bifunctional catalyst
resolves10.1016/j.cej.2017.08.002
Deactivating harmful marine microorganisms through photoelectrocatalysis by GO/ZnWO4 electrodes
resolves10.1016/j.jphotochem.2009.08.001
Photoelectrocatalytic degradation of ethylene by a combination of TiO2 and activated carbon felts
resolves10.3390/catal10090960
Accelerated Redox Cycles of Fe(III)/Fe(II) and Cu(III)/Cu(II) by Photo-Induced Electron from N-CQDs for Enhanced Photo-Fenton Capability of CuFe-LDH
resolves10.1016/j.apsusc.2022.153276
Air- and water-stable halide perovskite nanocrystals protected with nearly-monolayer carbon nitride for CO2 photoreduction and water splitting
The 30 references without a DOI — listed, not checked
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no DOI — not checkedPreparation of CC/TiO 2 /CuFe-LDH material 160 Weighed 0.1389 g ferric nitrate nonahydrate, 161 0.1664 g copper nitrate pentahydrate,0.7507 g urea 162 and 0.185 g ammonium fluoride; dissolved in 163 ultrapure water, stirred and then transferred to the 164 reactor, put CC/TiO 2 material, hydrothermal heated 165 at 120? for 6 h, then cleaned the carbon cloth with 166 anhydrous ethanol, and dried at 60?. Obtained the 167 CC/TiO 2 /CuFe-LDH material
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no DOI — not checked) as an electrolyte and a three-185 electrode system( working electrode: 186 CC/TiO 2 /CuFe-LDH material; opposite electrode: 187 carbon rod; reference electrode: Hg/HgO electrode. 188 2.4 Degradation test 189 Add 40 mL of nitrobenzene (NB) with a 190 concentration of 50 mg/L to the anode of the three-191 electrode system
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no DOI — not checkedIt can be seen from Fig. 2a that lamellar CuFe-LDH 250 was distributed on rod-like TiO 2 . Lattice stripes were 251 clearly visible in HRTEM (Fig. 2b), indicating that 252 CC/TiO 2 /CuFe-LDH had good crystallinity. The 253 lattice fringe spacing of 0.32 nm corresponds to the 254 (110) plane of TiO 2 , and the lattice fringe spacing of 255 0.38 nm corresponds to the (006) plane of Fig
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no DOI — not checkedHRTEM images of CC/TiO 2 /CuFe-LDH, c) XRD images of CC/TiO 2 /CuFe-LDH, d) SEM images of CC/TiO 2 /CuFe-LDH, and f)-g) Element mappings of CC/TiO 2 /CuFe-LDH. 428 under the promotion of bias voltage and the 429 accumulation of electrons and holes, CB and VB 430 were bent upward
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no DOI — not checked446 h + +H 2 O?�OH+H + 447 HO�+NB? Degradation 448 4. Conclusion 449 In this study, we prepared CC/TiO 2 /CuFe-LDH , the photoelectrons are more 461 likely to transfer to the CuFe-LDH than to the 462 external circuit, which can promote the redox cycles 463 of Cu(III)/Cu(II) and Fe(III)/Fe(II), and greatly 464 improve the utilization rate of photoelectrons
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no DOI — not checkedVisible light photocatalysis of fullerol-complexed TiO 2 enhanced by Nb doping
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no DOI — not checkedOxidative Degradation of Nitrobenzene by a Fenton-like Reaction with Fe-Cu Bimetallic Catalysts
no DOI — not checkedA study on advanced oxidation mechanism of MnCo 2 O 4 /g-C 3 N 4 degradation of nitrobenzene: Sacrificial oxidation and radical oxidation
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