Henych Jiří, Št'astný Martin, Němečková Zuzana, Kormunda Martin, Šanderová Zuzana, Žmudová Zuzana, Ryšánek Petr, Stehlík Štěpán, Ederer Jakub, Liegertová Michaela, Trögl Josef, Janoš Pavel
Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68Husinec-Řež, Czech Republic.
Faculty of Environment, Jan Evangelista Purkyně University in Ústí nad Labem, Pasteurova 3632/15, 400 96Ústí nad Labem, Czech Republic.
ACS Appl Nano Mater. 2022 Dec 23;5(12):17956-17968. doi: 10.1021/acsanm.2c03926. Epub 2022 Nov 29.
Nanoscale cerium-bismuth oxides/oxynitrates were prepared by a scalable low-temperature method at ambient pressure using water as the sole solvent. Solid solutions were formed up to a 1:1 Ce/Bi molar ratio, while at higher doping levels, bismuth oxynitrate photocatalysts with a pronounced layered structure were formed. Bismuth caused significant changes in the structure and surface properties of nanoceria, such as the formation of defects, oxygen-containing surface groups, and Lewis and Brønsted acid sites. The prepared bifunctional adsorbents/photocatalysts were efficient in the removal of toxic organophosphate (methyl paraoxon) from water by reactive adsorption followed by photocatalytic decomposition of the parent compound and its degradation product (-nitrophenol). Bi-doped ceria also effectively adsorbed and photodegraded the endocrine disruptors bisphenols A and S and outperformed pure ceria and the P25 photocatalyst in terms of efficiency, durability, and long-term stability. The very low toxicity of Bi-nanoceria to mammalian cells, aquatic organisms, and bacteria has been demonstrated by comprehensive in vivo/in vitro testing, which, in addition to its simple "green" synthesis, high activity, and durability, makes Bi-doped ceria promising for safe use in abatement of toxic chemicals.
采用可扩展的低温方法,在常压下以水作为唯一溶剂制备了纳米级铈铋氧化物/氧硝酸盐。在铈/铋摩尔比达到1:1时形成固溶体,而在更高的掺杂水平下,形成了具有明显层状结构的硝酸氧铋光催化剂。铋引起了纳米氧化铈结构和表面性质的显著变化,如缺陷的形成、含氧表面基团以及路易斯酸和布朗斯特酸位点。制备的双功能吸附剂/光催化剂通过反应吸附从水中有效去除有毒有机磷酸酯(甲基对氧磷),随后对母体化合物及其降解产物(对硝基苯酚)进行光催化分解。铋掺杂的氧化铈还能有效吸附和光降解内分泌干扰物双酚A和双酚S,在效率、耐久性和长期稳定性方面优于纯氧化铈和P25光催化剂。全面的体内/体外测试表明,铋纳米氧化铈对哺乳动物细胞、水生生物和细菌的毒性极低,除了其简单的“绿色”合成、高活性和耐久性外,这使得铋掺杂的氧化铈在减少有毒化学物质方面有望安全使用。