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Highly efficient persulfate oxidation process activated with NiO nanosheets with dominantly exposed {110} reactive facets for degradation of RhB

机译:NiO纳米片活化的高效过硫酸盐氧化工艺,该纳米片具有显着暴露的{110}反应性面,可降解RhB

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摘要

In this study, we developed a facile mechanochemical method to prepare ultrafine nickel oxide nanosheets with preferential high energy {1 1 0}-facets, an ultrathin thickness of 2 nm and a platelet size of 2-20 nm. These ultrafine nanosheets were synthesized by hand grinding hydrated copper nitrate salt with solid NaOH, while spherical nanoparticles with no preferential facets were obtained using Na2CO3 as base instead. The ultrafine NiO nanosheets exhibited a catalytic efficiency as high as 98.3% at 30 min for degrading RhB by activating persulfate (PS) at a handful of catalyst (0.3 g/L) and oxidant (0.3 g/L), much higher than the 64.6% efficiency of the Na2CO3-obtained NiO nanoparticles. The superior catalyzing ability of the ultrafine NiO nanosheet was attributed to its high proportion of the high-energy NiO {1 1 0}-facets, although its specific surface area (64.74 m(2)/g) was lower than that of the Na2CO3-obtained NiO (84.08 m(2)/g). The effects of NiO nanosheet dosage, PS concentration, initial pH and anions on RhB degradation were systematically investigated. The ultrafine nanosheets also exhibit low metal leaching and good recyclability. Furthermore, the mechanism for PS activation by NiO nanosheets was elucidated by Electron spin resonance (ESR) spectra, scavenger experiments and X-ray photoelectron spectroscopy (XPS) analysis. The results revealed that surface-bound radicals were the primary active species in the NiO nanosheet/PS system. This work offers a quick, simple, cheap, facile and scalable way to prepare highly efficient catalysts for advanced catalytic oxidation.
机译:在这项研究中,我们开发了一种简便的机械化学方法来制备具有优先高能{1 1 0}面,2nm超薄厚度和2-20 nm血小板大小的超细氧化镍纳米片。这些超细纳米片是通过将水合硝酸铜盐与固体NaOH手工研磨而合成的,而以Na2CO3为碱则得到了没有优先刻面的球形纳米片。 NiO超细纳米片在30分钟时通过在少量催化剂(0.3 g / L)和氧化剂(0.3 g / L)下活化过硫酸盐(PS)来降解RhB的催化效率高达98.3%,远高于64.6。 Na 2 CO 3获得的NiO纳米颗粒的%效率。尽管其比表面积(64.74 m(2)/ g)低于Na2CO3的比表面积,但超细NiO纳米片的出色催化能力归因于其高比例的高能NiO {1 1 0}-面。 -获得NiO(84.08 m(2)/ g)。系统研究了NiO纳米片的用量,PS浓度,初始pH和阴离子对RhB降解的影响。超细纳米片还显示出低的金属浸出和良好的可回收性。此外,通过电子自旋共振(ESR)光谱,清除剂实验和X射线光电子能谱(XPS)分析阐明了NiO纳米片激活PS的机制。结果表明,表面结合的自由基是NiO纳米片/ PS系统中的主要活性物质。这项工作为制备用于高级催化氧化的高效催化剂提供了一种快速,简单,便宜,方便且可扩展的方法。

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  • 来源
    《Applied Surface Science》 |2020年第1期|144318.1-144318.10|共10页
  • 作者

  • 作者单位

    Chinese Acad Sci Shanghai Inst Ceram 1295 Dingxi Rd Shanghai 200050 Peoples R China|Shanghai Univ Dept Chem Coll Sci 99 Shangda Rd Shanghai 200444 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram 1295 Dingxi Rd Shanghai 200050 Peoples R China|Chinese Acad Sci Suzhou Res Inst Shanghai Inst Ceram 238 North Changchun Rd Taicang 215499 Jiangsu Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram 1295 Dingxi Rd Shanghai 200050 Peoples R China;

    Chinese Acad Sci Shanghai Adv Res Inst Green Chem Engn Technol Res Ctr 99 Haike Roacl Shanghai 201210 Peoples R China;

    Shanghai Univ Dept Phys Coll Sci 99 Shangda Rd Shanghai 200444 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nickel oxide nanosheets; Mechanochemical; Persulfate; Surface-bound radicals;

    机译:氧化镍纳米片;机械化学;过硫酸盐;表面结合的自由基;

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