PMS activation using reduced graphene oxide under sonication: Efficient metal-free catalytic system for the degradation of rhodamine B, bisphenol A, and tetracycline. [electronic resource]
By: Contributor(s): Publication details: Ultrasonics sonochemistry Apr 2019Description: 164-175 p. digitalISSN:- 1873-2828
Publication Type: Journal Article
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PMS activation using reduced graphene oxide under sonication: Efficient metal-free catalytic system for the degradation of rhodamine B, bisphenol A, and tetracycline.
APA
Cherifi Y., Addad A., Vezin H., Barras A., Ouddane B., Chaouchi A., Szunerits S. & Boukherroub R. (2019). PMS activation using reduced graphene oxide under sonication: Efficient metal-free catalytic system for the degradation of rhodamine B, bisphenol A, and tetracycline. : Ultrasonics sonochemistry.
Chicago
Cherifi Yacine, Addad Ahmed, Vezin Hervé, Barras Alexandre, Ouddane Baghdad, Chaouchi Ahcène, Szunerits Sabine and Boukherroub Rabah. 2019. PMS activation using reduced graphene oxide under sonication: Efficient metal-free catalytic system for the degradation of rhodamine B, bisphenol A, and tetracycline. : Ultrasonics sonochemistry.
Harvard
Cherifi Y., Addad A., Vezin H., Barras A., Ouddane B., Chaouchi A., Szunerits S. and Boukherroub R. (2019). PMS activation using reduced graphene oxide under sonication: Efficient metal-free catalytic system for the degradation of rhodamine B, bisphenol A, and tetracycline. : Ultrasonics sonochemistry.
MLA
Cherifi Yacine, Addad Ahmed, Vezin Hervé, Barras Alexandre, Ouddane Baghdad, Chaouchi Ahcène, Szunerits Sabine and Boukherroub Rabah. PMS activation using reduced graphene oxide under sonication: Efficient metal-free catalytic system for the degradation of rhodamine B, bisphenol A, and tetracycline. : Ultrasonics sonochemistry. 2019.