Construction of a New 2D Coordination Polymer: Degradation Antibiotic Nitrofurantoin and Magnetism

Author:

Wu Yu1ORCID,Ghosh Mithun Kumar2ORCID,Wang Xin1,Li Yulong1ORCID,Ansari Istikhar A.3ORCID,Muddassir Mohd.4ORCID,Sakiyama Hiroshi5ORCID,Ghorai Tanmay Kumar6ORCID

Affiliation:

1. School of Chemistry and Environmental Engineering Sichuan University of Science & Engineering Zigong China

2. Department of Chemistry Medi‐Caps University Indore India

3. Department of Chemistry Indian Institute of Technology Kanpur India

4. Department of Chemistry, College of Science King Saud University Riyadh Saudi Arabia

5. Department of Science, Faculty of Science Yamagata University, Kojirakawa Yamagata Japan

6. Nanomaterials & Crystal Design Laboratory, Department of Chemistry Indira Gandhi National Tribal University Amarkantak Madhya Pradesh India

Abstract

ABSTRACTThe synthesis of a trinuclear Co(II)‐based coordination polymer (CP), [Co3(HL)2(H2O)6·2.2H2O]n (1), was achieved via a solvothermal method involving CoCl2·6H2O and 3‐(2,4‐dicarboxylphenyl)‐2,6‐dicarboxylpyridine (H3L). The photocatalytic efficiency of the complex was evaluated for the degradation of various antibiotics ornidazole (ODZ), nitrofurantoin (NFT), dinitroaniline (DNZ), and tinidazole (TDZ) in wastewater. Notably, NFT exhibited a remarkable 91.5% degradation within 20 min under optimal conditions. The catalytic performance was influenced by the amount of photocatalyst, NFT concentration, and solution pH, with optimal conditions identified at 6‐mg catalyst dose, 30 mg/L NFT concentration, and pH 7. Trapping experiments highlighted the roles of superoxide and hydroxyl radicals as primary active species in the photocatalytic process. Furthermore, the magnetic behavior is also discussed in detail.

Funder

National Natural Science Foundation of China

Japan Society for the Promotion of Science

Publisher

Wiley

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