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PMID: 41815404 已发表 · epublish 英语

Coumarin thiazole-derived Schiff base copper complex: synthesis, characterization, and applications in the catalytic degradation of dyes, pearl millet seed germination for improved agricultural output and antioxidant assays.

RSC advances ·第 16 卷 ·第 15 期 ·2026-03-09

Sharma N, Kanchan, Shrivastava R

摘要

In this work, we report the synthesis, characterization, catalytic degradation of dyes, and antioxidant scavenging assay of a coumarin thiazole-derived Schiff base (CTSB) copper complex and its impact on pearl millet seed germination. The coumarin thiazole Schiff base ligand was synthesized from diethylamino salicylaldehyde and a coumarin thiazole-based amine. The catalytic degradation of organic dyes using the synthesized coumarin thiazole-derived Schiff base (CTSB) copper complex exhibited 99.89% degradation of methylene blue within 35.0 seconds, while 94.22% of rhodamine B was degraded at room temperature within 3.0 minutes upon exposure to sunlight under optimum reaction conditions. Moreover, 92.88% of Congo red and 70.65% of methyl orange were degraded within 20.0 minutes and 12.0 minutes, respectively, at room temperature upon exposure to sunlight; similar percentages of degradation were obtained within 12.0 minutes and 4.0 minutes, respectively, when they were exposed to ultraviolet light. Additionally, the coumarin thiazole-derived Schiff base (CTSB) copper complex exhibited outstanding antioxidant activity (90.59%) against DPPH assays. Further, the effect of the developed CTSB-copper complex on seed germination was examined on hybrid pearl millet seeds. Methylene blue and methyl orange exhibited approximately 30% and 17% reduction in seed germination, respectively, in comparison to the control. The treatment with the CTSB-copper complex neutralized the effect of methylene blue and methyl orange dyes on the percentage germination of hybrid pearl millet seeds. The present findings highlight the potential of the CTSB-copper complex as a sustainable material for environmental remediation and for various applications in agriculture and biological sciences.

文献信息
期刊
RSC advances
期刊简称
RSC Adv
ISSN
2046-2069
发表日期
2026-03-09
语言
英语
国家/地区
England
NLM ID
101581657
分析服务
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