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Nickel-Cobalt Layered Double Hydroxides for Photocatalytic Degradation under Visible Light Irradiation

机译:可见光照射下光催化降解的镍 - 钴层双氢氧化物

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As large amount of dye has been discharged as wastewater and infiltrated into our water system, it is now affecting the aquatic life due to its carcinogenic nature. Although heterogenous photocatalytic process is found effective in mineralizing these organic pollutants into less harmful one through light irradiation, the most often explored TiO2 is active only under UV light, thus limits its real application such photocatalyst in environmental remediation. A new class materials with hydrotalcite like structure, layered double hydroxides (LDH) has been recently explored for their superior photocatalytic degradation property as their anionic intercalating layer boosts their absorption capabilities, thus yielding high active surface area for photo-degradation to proceed. Despite their band gap tunability, chemical versatility and high reproducibility in large quantities, they suffer from poor control over particles size and morphology. Here in this paper, three different Nickel-Cobalt LDH morphologies are uniformly produced by utilizing a facile and economical synthesis method and by adjusting the precursor, ammonium fluoride. It is shown that NH4F can act as a structural-mediating agent that transforms 1D to 2D structure as well as a crystal forming agent that boosts the photocatalyst's crystallinity, which would essentially enhance its photocatalytic methyl orange degradation for almost 2-fold than those of poor crystallinity. In short, this paper demonstrates a facile control of morphology and crystallinity of LDH for better photocatalysis under visible light irradiation.
机译:随着大量染料已作为废水排出并渗透到我们的水系统中,它现在由于其致癌性质而影响水生生物。尽管在通过光照射中发现这些有机污染物的矿化有效的异形光催化过程有效,但最常探索的TiO2仅在UV光下活跃,因此限制其在环境修复中的这种光催化剂的实际应用。与水滑石状结构一类新材料,层状双氢氧化物(LDH)最近已为他们的优良的光催化降解性能作为其阴离子嵌入层提升它们的吸收能力探索,从而产生用于光降解进行高活性表面积。尽管其带隙可调性,化学多样性和大量的高再现性,但它们对颗粒尺寸和形态的控制差。在本文中,通过利用容易和经济的合成方法并通过调节前体,氟化铵来均匀地产生三种不同的镍钴LDH形态。结果表明,NH4F可以用作结构介导剂,其将1D转化为2D结构以及促进光催化剂的结晶度的晶体形成剂,这将基本上增强其光催化甲基橙色降解几乎比穷人的光催化甲基橙色降解几乎2倍结晶度。简而言之,本文展示了LDH的形态和结晶度的容纳控制,可在可见光照射下更好的光电催化。

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