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Title Facile and novel synthesis of nitrogen doped TiO2/Acid soluble collagen-polyvinyl pyrrolidone (ASC-PVP) hybrid nanocomposite for rapid and effective photodegradation of naphthalene from water under visible light irradiation
Type JournalPaper
Keywords N-TiO2/ASC-PVP hybrid nanocomposite; Naphthalene; Photodegradation; Visible light
Abstract A highly efficient, eco-friendly, and visible-light-driven photocatalyst, namely nitrogen doped titanium dioxide (N-TiO2)/collagen-polyvinyl pyrrolidone (ASC-PVP) hybrid nanocomposite is prepared via facile sol-gel method. The ASC-PVP steadily covers the N-TiO2. The XPS data confirmed the oxygen vacancies and nitrogen interstitial-type doping in N-TiO2 prepared by the sol-gel route. Furthermore, the O 1s and N 1S XPS data prove that both nitrogen and oxygen atoms of ASC-PVP are participated in hydrogen bonds with N-Ti-O and/or Ti-O-N bonds in N-TiO2 nanoparticles. Moreover, the N-TiO2/ASC-PVP is shown an obvious red shift of absorption band edge and reduced recombination rate of electron-hole in comparison with N-TiO2 nanoparticles. N-TiO2/ASC-PVP was used to study photocatalytic degradation of a typical polycyclic aromatic hydrocarbon (PAHs), namely naphthalene in water under visible light irradiation. N-TiO2/ASC-PVP possessed high photocatalytic activity for the naphthalene degradation (86%) within 100 min under visible light. The inhibitory effect on the naphthalene photodegradation indicated that and h+•are the major reactive species. Also, the N-TiO2/ASC-PVP exhibited very good visible light photocatalytic efficiency for the removal of naphthalene at very low concentrations from seawater.
Researchers Maryam Mitra Elmi (Third Researcher), Fatemeh Elmi (Second Researcher), Seyyede Elaheh Hosseini Doabi (First Researcher)