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Surface hybridization of π-conjugate structure cyclized polyacrylonitrile and radial microsphere shaped TiO for reducing U(VI) to U(IV). | LitMetric

Surface hybridization of π-conjugate structure cyclized polyacrylonitrile and radial microsphere shaped TiO for reducing U(VI) to U(IV).

J Hazard Mater

Key Laboratory of Superlight Materials and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China; College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin 150001, China; HIT (Hainan) MilitaryCivilian Integration Innovation

Published: August 2021


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Article Abstract

It is still a challenge to obtain uranium (U) adsorbents with high selectivity, excellent cycle stability and excellent performance through design and synthesis. In this paper, the TiO/CPAN-AO catalyst was prepared by the hydrothermal method combined with high temperature cyclization dehydrogenation. TiO/CPAN-AO has excellent photocatalytic properties, which can reduce U(VI) to U(IV) quickly and selectively. The generated Z-type heterojunction promotes the reduction ability of photogenerated electrons, and obtains great selectivity to UO (Uranyl ions) through the AO group. TiO/CPAN-AO with π-electron conjugated structure broadens the spectral range through surface hybridization and prolongs the lifetime of photo-generated charges. Under the induction of light, the uranium extraction capacity of TiO/CPAN-AO after 5 h of irradiation is about 2.38 g/g. TiO/CPAN-AO is a catalyst with enhanced adsorption capacity, making it possible to extract uranium from large-scale natural seawater in the future.

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http://dx.doi.org/10.1016/j.jhazmat.2021.125812DOI Listing

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