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Suitable energy platform significantly improves charge separation of g-C_3N_4 for CO_2 reduction and pollutant oxidation under visible-light
Authors:Amir Zada  Nauman Ali  Fazle Subhan  Natasha Anwar  Muhammad Ishaq Ali Shah  Muhammad Ateeq  Zahid Hussain  Khair Zaman  Momin Khan
Affiliation:1. Department of Chemistry, Abdul Wali Khan University, Mardan, 23200 Pakistan;2. Key Laboratory of Functional Inorganic Materials Chemistry (Heilongjiang University), Ministry of Education, School of Chemistry and Materials Science, International Joint Research Center for Catalytic Technology, Harbin 150080 China;3. Institute of Chemical Sciences, University of Peshawar, 25120 Pakistan
Abstract:The photocatalytic activities of g-C_3N_4 can be significantly improved by increasing life time of the photogenerated charges. Here, in this work we introduced TiO_2 as proper energy platform to accept the photogenerated electrons from g-C_3N_4 during photocatalysis. The nanophotocatalysts formed from the combination of a suitable amount of TiO_2 nanoparticles and g-C_3N_4 nanosheets showed 8.75 and 4.22% enhancement in photocatalytic activities for CO_2 reduction and 2-chlorophenol(2-CP) degradation under visible light illumination as compared to bare g-C_3N_4. Based on the surface photovoltage spectra, photoluminescence spectra and examination of formed hydroxyl radicals, it was confirmed that these enhanced photoactivities were attributed to the much-improved charge separation via the electron transfer from g-C_3N_4 to TiO_2. From trapping experiments,it was found that hydroxyl radicals were the major species involved in the photocatalytic degradation of 2-CP.This study is helpful to synthesize efficient photocatalysts to cope with energy and environmental issues.
Keywords:Corresponding author. Department of Chemistry, Abdul Wali Khan University Mardan, 23200 Pakistan.  Nanophotocatalyst  Charge separation  Pollutant degradation
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