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Hexagonal SnSe nanoplate supported SnO2-CNTs nanoarchitecture for enhanced photocatalytic degradation under visible light driven.

  • 【作者】Karpuraranjith, Marimuthu ,Chen, Yuanfu ,Wang, Xinqiang ,Yu, Bo ,Rajaboopathi, Sivamoorthy ,Yang, Dongxu
  • 【DOI】10.1016/j.apsusc.2019.145026
  • 【作者单位】1 School of Electronic Science and Technology, and State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, PR China 2 Department of Physics, School of Science, and Everest Research Institute, Tibet University, Lhasa 850000, PR China 3 Bio-nanomaterials Research Lab, Department of Industrial Chemistry, School of Chemical Sciences, Alagappa University, Karaikudi, Tamil Nadu, India
  • 【年份】2020
  • 【卷号】Vol.507
  • 【ISSN】0169-4332
  • 【关键词】Band gap Hexagonal SnSe High surface area Nanoarchitecture Photocatalytic activity SnO2-CNTs 
  • 【摘要】 Novel SnSe nanoplates on SnO 2 -CNTs are synthesized by one-pot solvothermal route. • CNTs-SnO 2 /SnSe delivers highly efficient photodegradation for aqueous MB dye. • CNTs results in highly reduced recombination electron-hole pair of CNTs-SnO 2 /SnS...
  • 【文献类型】 期刊
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