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镍掺杂和镍/铬共掺杂 TiO 纳米管用于增强亚甲基蓝的光催化降解。

Ni-doped and Ni/Cr co-doped TiO nanotubes for enhancement of photocatalytic degradation of methylene blue.

机构信息

Nanophotonics and Applications Lab, Physics Department, Faculty of Science, Beni-Suef University, Beni-Suef 62514, Egypt.

Egyptian Petroleum Research Institute (EPRI), Cairo 11727, Egypt.

出版信息

J Colloid Interface Sci. 2019 Nov 1;555:31-41. doi: 10.1016/j.jcis.2019.07.070. Epub 2019 Jul 25.

Abstract

Ni-doped and Ni/Cr co-doped TiO nanotubes were successfully synthesized using a novel hydrothermal method. The surface and bulk properties of as-synthesized nanopowders were characterized using various microstructural and optical techniques. The photocatalytic ability of these nanopowders was investigated systematically for the decomposition of methylene blue dye (MB) under visible light illumination. The morphological results revealed the structural transformation of TiO nanotubes to nanosheets, and further to a mixture of nanosheet/nanotube on doping with Ni and co-doping of Ni/Cr, respectively. Moreover, the Ni doping causes an optical absorption edge shifts towards lower wavelengths, while doping by Ni/Cr results to an optical absorption edge shifts towards higher wavelength in comparison to TiO-nanotubes. Also, Ni-doping and Ni/Cr co-doping strongly affects the Raman vibrational modes owing to the changes in interplanar distance, crystallite size, dislocation density, and crystal microstrains. Among the undoped, doped and co-doped TiO nanoparticles, the 6Ni/4Cr co-doped TiO exhibited a higher efficiency of 95.6% and excellent stability towards the photocatalytic degradation of MB. It is attributed to the availability of many carriers for the efficient photo-oxidation within the UV-Vis optical absorption range. Also, the photocatalytic reaction kinetics and degradation mechanism of MB were discussed.

摘要

采用一种新颖的水热法成功合成了掺镍和镍/铬共掺 TiO 纳米管。利用各种微观结构和光学技术对合成的纳米粉末的表面和体性质进行了表征。系统研究了这些纳米粉末在可见光照射下分解亚甲基蓝染料 (MB) 的光催化能力。形态学结果表明,在掺杂 Ni 和 Ni/Cr 共掺杂后,TiO 纳米管分别转化为纳米片,进一步转化为纳米片/纳米管的混合物。此外,与 TiO 纳米管相比,Ni 掺杂导致光吸收边缘向短波长移动,而 Ni/Cr 掺杂导致光吸收边缘向长波长移动。此外,由于层间距、晶粒尺寸、位错密度和晶体微应变的变化,Ni 掺杂和 Ni/Cr 共掺杂强烈影响拉曼振动模式。在未掺杂、掺杂和共掺杂的 TiO 纳米颗粒中,6Ni/4Cr 共掺杂 TiO 表现出更高的效率(95.6%)和对 MB 光催化降解的优异稳定性。这归因于在 UV-Vis 光吸收范围内存在许多载流子,有利于有效的光氧化。此外,还讨论了 MB 的光催化反应动力学和降解机制。

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