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[1] P. Xuan Nui, N. Ba Manh, and D. Van Huan, “Direct synthesis of highly ordered Ti-containing Al-SBA-15 mesostructured catalysts from natural halloysite and its photocatalytic activity for oxidative desulfurization of dibenzothiophene,” Advanced Powder Technology, 2020, 31(8), 3351–3360 |
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Tiêu đề: |
Direct synthesis of highly ordered Ti-containing Al-SBA-15 mesostructured catalysts from natural halloysite and its photocatalytic activity for oxidative desulfurization of dibenzothiophene,” "Advanced Powder Technology", 2020," 31(8) |
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[2] Y. Xie, F. Posada, and R. Minjares, “Diesel sulfur content impacts on Euro VI soot-free vehicles: Considerations for emerging markets,” International Council on Clean Transportation, 2020, 11, 1–15 |
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Tiêu đề: |
Diesel sulfur content impacts on Euro VI soot-free vehicles: Considerations for emerging markets,” "International Council on Clean Transportation", 2020, "11 |
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[3] P. B. Sara Houda, Christine Lancelot, L. Poinel, and C. Lamonier, “Oxidative Desulfurization of Heavy Oils with High Sulfur Content: A Review,” Catalyst, 2018, 8(9), 344–352 |
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Tiêu đề: |
Oxidative Desulfurization of Heavy Oils with High Sulfur Content: A Review,” "Catalyst", 2018, "8(9) |
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[4] M. A. Betiha, A. M. Rabie, H. S. Ahmed, A. A. Abdelrahman, and M. F. El- Shahat, “Oxidative desulfurization using graphene and its composites for fuel containing thiophene and its derivatives: An update review,” Egyptian Journal of Petroleum, 2017, 27(4), 715–730 |
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Tiêu đề: |
Oxidative desulfurization using graphene and its composites for fuel containing thiophene and its derivatives: An update review,” "Egyptian Journal of Petroleum", 2017, "27(4) |
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[5] W. Zhu, Y. Xu, H. Li, B. Dai, and H. Xu, “Photocatalytic oxidative desulfurization of dibenzothiophene catalyzed by amorphous TiO 2 in ionic liquid Wenshuai,” Chemical Engineering Journal, 2014, 31(2), 211–217 |
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Tiêu đề: |
Photocatalytic oxidative desulfurization of dibenzothiophene catalyzed by amorphous TiO 2 in ionic liquid Wenshuai,” "Chemical Engineering Journal", 2014," 31(2) |
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[6] M. S. Khan, C. F. Kait, and M. I. A. Mutalib, “Photooxidative Desulfurization for Diesel using Fe/N-TiO 2 Photocatalyst,” American Institute of Physics, 2014, 1621(10), 10–16 |
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Tiêu đề: |
Photooxidative Desulfurization for Diesel using Fe/N-TiO 2 Photocatalyst,” "American Institute of Physics", 2014, "1621(10) |
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[7] M. Alhaddad and A. Shawky, “Superior photooxidative desulfurization of thiophene by reduced graphene oxide-supported MoS 2 nanoflakes under visible light,” Fuel Processing Technology, 2020, 205, 106453 - 106461 |
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Tiêu đề: |
Superior photooxidative desulfurization of thiophene by reduced graphene oxide-supported MoS 2 nanoflakes under visible light,” "Fuel Processing Technology", 2020," 205 |
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[8] E. Poulakis and C. Philippopoulos, “Photocatalytic treatment of automotive exhaust emissions,” Chemical Engineering Journal, 2017, 309, 178–186 |
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Tiêu đề: |
Photocatalytic treatment of automotive exhaust emissions,” "Chemical Engineering Journal", 2017, "309 |
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[9] A. Dey and P. R. Gogate, “Nanocomposite photocatalysts-based wastewater treatment,” Handbook of Nanomaterials for Wastewater Treatment, 2021, 24, 779–809 |
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Tiêu đề: |
Nanocomposite photocatalysts-based wastewater treatment,” "Handbook of Nanomaterials for Wastewater Treatment", 2021, "24 |
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[10] Duncan J. Woods, Sam A. J. Hillman, Drew Pearce, Liam Wilbraham, Lucas Q. Flagg, Warren Duffy, Iain McCulloch, James R. Durrant, Anne A. Y.Guilbert, Martijn A. Zwijnenburg, Reiner Sebastian Sprick, Jenny Nelson and Andrew I. Cooper., “Side-chain tuning in conjugated polymer photocatalysts for improved hydrogen production from water,” Energy & Environmental Science, 2020, 13(6), 1843–1855 |
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Tiêu đề: |
Side-chain tuning in conjugated polymer photocatalysts for improved hydrogen production from water,” "Energy & Environmental Science", 2020, "13(6) |
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[11] C. Acar, I. Dincer, and C. Zamfirescu, “A review on selected heterogeneous photocatalysts for hydrogen production,” International Journal of Energy Research, 2014, 38(15), 1903–1920 |
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Tiêu đề: |
A review on selected heterogeneous photocatalysts for hydrogen production,” "International Journal of Energy Research", 2014, "38(15) |
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[12] N. Lakshmana Reddy, V. Navakoteswara Rao, M. Vijayakumar, R. Santhosh, S. Anandan, M. Karthik, M.V. Shankar, Kakarla Raghava Reddy, Nagaraj P.Shetti, M.N. Nadagouda, Tejraj M. Aminabhav “A review on frontiers in plasmonic nano-photocatalysts for hydrogen production,” International Journal of Hydrogen Energy, 2019, 44(21), 10453–10472 |
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Tiêu đề: |
A review on frontiers in plasmonic nano-photocatalysts for hydrogen production,” "International Journal of Hydrogen Energy", 2019," 44(21) |
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[13] Z. Xiaotong, Z. Guowei, Z. Huayong, W. Cuicui, and S. Hongbin, “Characterization and activity of visible light–driven TiO 2 ,” Transition Metal Chemistry, 2011, 36, 217–222 |
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Tiêu đề: |
Characterization and activity of visible light–driven TiO 2 ,” "Transition Metal Chemistry", 2011, " 36 |
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[14] J. Sá, C. A. Agüera, S. Gross, and J. A. Anderson, “Photocatalytic nitrate reduction over metal modified TiO 2 ,” Applied Catalysis B: Environmental, 2009, 85(3–4), 192–200 |
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Tiêu đề: |
Photocatalytic nitrate reduction over metal modified TiO 2 ,” "Applied Catalysis B: Environmental", 2009, "85(3–4) |
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[15] G. Dedual, M. J. Macdonald, A. Alshareef, Z. Wu, D. C. W. Tsang, and A. C. K. Yip, “Requirements for effective photocatalytic oxidative desulfurization of a thiophene-containing solution using TiO 2 ,” Journal of Environmental Chemical Engineering, 2014, 2(4), 1947–1955 |
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Tiêu đề: |
Requirements for effective photocatalytic oxidative desulfurization of a thiophene-containing solution using TiO 2 ,” "Journal of Environmental Chemical Engineering |
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[16] Q. Xiang, J.Yu, B. Cheng, and H. Ong, “Microwave-Hydrothermal Preparation and Visible-Light Photoactivity of Plasmonic Photocatalyst Ag- TiO 2 Nanocomposite Hollow Spheres,” Asian Journal of Chemistry, 2010, 5, 1466–1474 |
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Tiêu đề: |
Microwave-Hydrothermal Preparation and Visible-Light Photoactivity of Plasmonic Photocatalyst Ag- TiO 2 Nanocomposite Hollow Spheres,” "Asian Journal of Chemistry", 2010, "5 |
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[17] J. González César-Torres, E. Poulain, V. Domínguez-Soria, R. García-Cruz, and O. Olvera-Neria, “C-, N-, S-, and F-doped anatase TiO 2 (101) with oxygen vacancies: Photocatalysts active in the visible region,”International Journal of Photoenergy, 2018, 1, 1–13 |
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Tiêu đề: |
C-, N-, S-, and F-doped anatase TiO 2 (101) with oxygen vacancies: Photocatalysts active in the visible region |
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[18] C. Di Valentin and G. Pacchioni, “Trends in non-metal doping of anatase TiO 2 : B, C, N and F,” Catalysis Today, 2013, 206, 12–18 |
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Tiêu đề: |
Trends in non-metal doping of anatase TiO 2 : B, C, N and F,” "Catalysis Today", 2013, "206 |
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[19] M. Khairy and W. Zakaria, “Effect of metal-doping of TiO 2 nanoparticles on their photocatalytic activities toward removal of organic dyes,” Egyptian Journal of Petroleum, 2014, 23(4), 419–426 |
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Tiêu đề: |
Effect of metal-doping of TiO 2 nanoparticles on their photocatalytic activities toward removal of organic dyes,” "Egyptian Journal of Petroleum", 2014, "23(4) |
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[20] W. Mekprasart, Sorapong Pavasupree, C. K. Jayasankar, B. R. Ravuri, and C. Wattanawikkam, “Characterization, X-ray absorption spectroscopic analysis and photocatalytic activity of Co/Zn Co-Doped TiO 2 nanoparticles synthesized by one-step sonochemical process,” Catalysis Today, 2021, 11, 1254–1265 |
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Tiêu đề: |
Characterization, X-ray absorption spectroscopic analysis and photocatalytic activity of Co/Zn Co-Doped TiO 2 nanoparticles synthesized by one-step sonochemical process,” "Catalysis Today", 2021, "11 |
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