Abstract
Cerium (IV) oxide, CeO2, is one of the most reactive rare-earth oxide, which has been attracting great interest in the past decade owing to its widespread variety of environment and energy-related applications including solid-state electrolytes for electrochemical devices (Mogensen et al. in Solid State Ionics 129:63–64, 2000), catalysts for three-way automobile exhaust systems (TWC) (Nikolaou in Sci Total Environ 235:71, 1999), polishing agents for chemical–mechanical planarization (Feng et al. in Science 312:1504–1508, 2006), sunscreens for ultraviolet absorbents (Imanaka et al. in Chem Mater 15:2289–2291, 2003), the adsorption and reaction of formaldehyde (Zhou and Mullins in Surf Sci 600:1540–1546, 2006), oxygen storage capacity, hybrid solar cells, H2S removal and luminescent materials for violet/blue fluorescence.
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Abdelkader, E., Nadjia, L., Naceur, B., Boukoussa, B., Mohamed, A. (2018). Fenton-like Catalytic Degradations of Neutral Red in Water Using Cerium Oxide Polishing Powder. In: Kallel, A., Ksibi, M., Ben Dhia, H., Khélifi, N. (eds) Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions. EMCEI 2017. Advances in Science, Technology & Innovation. Springer, Cham. https://doi.org/10.1007/978-3-319-70548-4_44
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DOI: https://doi.org/10.1007/978-3-319-70548-4_44
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