Novel n–n Type CoCr2O4/NiFe2O4 Heterojunction Photocatalyst: Internal Magnetic Field Control of Photocatalytic Activity, Mechanism Insight and Pathway for Tetracycline Hydrochloride Degradation

Author:

Gao Huajing1,Angadi Jagadeesha2ORCID,Wang Shifa3,Zhou Xianju1,Li Li1,Yang Hua4,Ubaidullah Mohd5,Li Dengfeng1,Prakash Chander6,Shaikh Shoyebmohamad F.5,Roy Nipa7,Joo Sang Woo8

Affiliation:

1. School of Science Chongqing University of Posts and Telecommunications Nan'an Chongqing 400065 China

2. Department of Physics P.C. Jabin Science College Hubballi Karnataka 580031 India

3. School of Electronic and Information Engineering Chongqing Three Gorges University Wanzhou Chongqing 404000 China

4. School of Science Lanzhou University of Technology Lanzhou 730050 China

5. College of Science King Saud University P.O. Box 2455 Riyadh 11451 Saudi Arabia

6. University Centre for Research and Development Chandigarh University Mohali Punjab 140413 India

7. Department of Physics Yeungnam University Gyeongsan 38541 Republic of Korea

8. School of Mechanical and IT Engineering Yeungnam University Gyeongsan 38541 Republic of Korea

Abstract

AbstractHerein, a series of CoCr2O4/wt%NiFe2O4(CCO/wt%NFO) composites are successfully synthesized by a simple solution combustion method combined with mechanical grinding techniques. The preparation of CCO/wt%NFO composites result in an estimation of its photocatalysis performance by removing tetracycline hydrochloride (TC) as a model of antibiotic pollutants. The results show that the percentage of NFO by mass have a great influence on the morphology and the photocatalysis performance of CCO/wt%NFO composites. Superior photocatalysis performance is observed in CCO/25%NFO composites prepared at percentage of NFO is 25%. The photocatalyst used with CCO/25%NFO composites result in a removal ratio of 81% for TC. The generation of hydroxyl radical (•OH), superoxide anion radical (•O2) and holes (h+) is largely responsible for degrading TC through photocatalysis in the presence of CCO/wt%NFO composites. The optimal operating conditions involve the initial concentration of TC and pH of TC being 50 mg L−1 and pH = 13, respectively. Furthermore, CCO/wt%NFO is highly reusable and stable during the photocatalytic removal process. The degradation pathway, toxicity, and photocatalytic mechanism of CCO/25%NFO composites for the degradation of TC are extensively examined through mass spectrometry, toxicity analysis, and energy band theory.

Funder

National Research Foundation of Korea

Publisher

Wiley

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