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Ultrafine silver nanoparticles deposited on sodium-doped graphitic carbon nitride towards enhanced photocatalytic degradation of dyes and antibiotics under visible light irradiation
Ultrafine silver nanoparticles deposited on sodium-doped graphitic carbon nitride towards enhanced photocatalytic degradation of dyes and antibiotics under visible light irradiation
Ultrafine silver nanoparticles deposited on sodium-doped graphitic carbon nitride towards enhanced photocatalytic degradation of dyes and antibiotics under visible light irradiation
Wang, Kai-Li (author) / Li, Yan (author) / Sun, Tao (author) / Mao, Fang (author) / Wu, Ji-Kui (author) / Xue, Bin (author)
Applied surface science ; 476 ; 741-748
2019-01-01
8 pages
Article (Journal)
English
DDC:
620.44
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Surface hydroxylation of graphitic carbon nitride: Enhanced visible light photocatalytic activity
British Library Online Contents | 2016
|Surface hydroxylation of graphitic carbon nitride: Enhanced visible light photocatalytic activity
British Library Online Contents | 2016
|Surface hydroxylation of graphitic carbon nitride: Enhanced visible light photocatalytic activity
British Library Online Contents | 2016
|Surface hydroxylation of graphitic carbon nitride: Enhanced visible light photocatalytic activity
British Library Online Contents | 2016
|Surface hydroxylation of graphitic carbon nitride: Enhanced visible light photocatalytic activity
British Library Online Contents | 2016
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