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Layered Protonated Titanate Nanosheets Synthesized with a Simple One-Step, Low-Temperature, Urea-Modulated Method as an Effective Pollutant Adsorbent

机译:通过简单的一步,低温,尿素调节方法合成的层状质子化钛酸盐纳米片,作为有效的污染物吸附剂

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A simple one-step, low-temperature, urea-modulated method is developed for the synthesis of layered protonated titanate nanosheets (LPTNs). Urea serves as an indirect ammonium ion source, and the controlled supply of the ammonium ion slows the crystalline formation process and enables the production of the LPTNs from amorphous intermediate through aging-induced restructuring. The resulting LPTNs exhibit excellent adsorption capacities for methylene blue and Pb~(2+) because of their high specific surface areas and excellent ion-exchange capability. Intercalation of Pb~(2+) into the interlayer space of the LPTNs is evidenced by the relevant X-ray diffraction patterns on perturbation of the layered structure. The LPTNs prove to be a promising adsorbent in wastewater treatment for adsorption removal of metal ions or cationic organic dyes.
机译:开发了一种简单的一步式低温尿素调节方法,用于合成层状质子化的钛酸酯纳米片(LPTN)。尿素充当间接铵离子源,铵离子的受控供应减慢了晶体形成过程,并使得能够通过老化诱导的重组从无定形中间体生产LPTN。所得的LPTN由于具有高的比表面积和优异的离子交换能力,因此对亚甲基蓝和Pb〜(2+)具有极好的吸附能力。 Pb〜(2+)插入LPTNs的层间空间是由扰动层状结构的相关X射线衍射图证明的。事实证明,LPTN是废水处理中吸附去除金属离子或阳离子有机染料的有前途的吸附剂。

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