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Cerium-doped beta-Ni(OH)(2) hexagon nanosheets: an effective photocatalyst for the degradation of the emerging water pollutant, naproxen

机译:铈掺杂的β-Ni(OH)(2)六边形纳米液:一种有效的光催化剂,用于新出现的水污染物,萘普生的降解

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摘要

Nickel hydroxide beta-Ni(OH)(2) hexagonal nanosheets were synthetized via a hydrothermal exfoliation process. The practical microwave-assisted hydrothermal method facilitated obtaining layered nickel 3D nanoplates with cerium functionalization in 5 h. The as-produced nanostructures were characterized by XRD, XPS, FESEM, FTIR, PL, UV-vis, and BET techniques. The hydroxilated structures are nano-thick hexagonal plates with sides 28 nm in length and an average thickness of 5 nm. UV and PL irradiation was used to study the photoactive properties in the degradation of a pharmaceutical emerging pollutant, naproxen. UV-vis spectroscopy and high-performance liquid chromatography monitoring indicated that the Ni(OH)(2)-Ce nanostructures are an effective photocatalyst for naproxen degradation, including 40% mineralization of this highly recalcitrant drug. The photocatalyst showed stability for two consecutive cycles, preserving its photoactive and structural characteristics. Ce3+-doped nanoplates and surface functionalized Ce4+ act as charge separators and scavenging agents for the enhanced photodegradation of naproxen.
机译:通过水热剥离方法合成氢氧化镍β-Ni(OH)(2)六方纳米片。实用的微波辅助水热法促进了5小时内用铈官能化获得分层镍3D纳米层。通过XRD,XPS,FESEM,FTIR,PL,UV-VI和BET技术以XRD,XPS,FESEM,和BET技术为特征。羟基化结构是含有侧面28nm的纳米厚的六边形板,长度为5nm。 UV和PL辐射用于研究药物新出现的污染物的降解中的光活性特性,Naproxen。 UV-Vis光谱和高效液相色谱监测表明,Ni(OH)(2)纳米纳米结构是用于萘普生降解的有效光催化剂,包括该高醋塑的40%矿化。光催化剂显示两个连续循环的稳定性,保持其光活性和结构特征。 CE3 + - 掺杂的纳米层板和表面官能化CE4 +充当电荷分离器和清除剂,用于增强萘普生的光降解。

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