Rana Md Sohel, Rayhan Noor Mohammad Azbar, Emon Md Shahadat Hossain, Islam Md Tanvir, Rathry Khandaker, Hasan Md Mahadi, Islam Mansur Md Munna, Srijon Bishal Chakrabarty, Islam Md Shohidul, Ray Anik, Rakib Md Abdur, Islam Azharul, Kudrat-E-Zahan Md, Hossen Md Faruk, Asraf Md Ali
Department of Chemistry, University of Rajshahi Rajshahi-6205 Bangladesh.
Department of Pharmacy, University of Rajshahi Rajshahi-6205 Bangladesh.
RSC Adv. 2024 Oct 21;14(45):33094-33123. doi: 10.1039/d4ra04375h. eCollection 2024 Oct 17.
Schiff base ligands, formed from primary amines and carbonyl compounds, are potential antioxidants because they scavenge 2,2-diphenyl-1-picrylhydrazyl (DPPH) radicals hydrogen atom transfer (HAT) and single electron transfer (SET) routes. This review aims to help design, synthesize, and discuss the antioxidant activity of Schiff base ligands based on their structure. This study critically discussed the solvent effect and the structural changes of Schiff base ligands responsible for DPPH scavenging activity, such as proton donating, electron-donating, and electron-withdrawing substituents, conjugation and ring structure. The ligands with electron-donating substituent groups in the phenolic ring demonstrated greater activity by readily stabilizing the radical and some of them showed higher activity than the standard. The activity also depends on the solvent used; the activity increases in those solvents that promote the proton and electron donation of the Schiff base. Schiff bases are most important due to their versatile applications, which can be explained by their antioxidant activity. The data led to the conclusion that the Schiff base ligand will serve as a source of synthetic antioxidants. There should be lots of scope for research on the antioxidant activity of Schiff bases. This review will assist researchers in studying Schiff base-based antioxidants and their applications. All the data analyzed in this paper was found from tests; for more clearance supplementary tests and investigations are crucial.
由伯胺和羰基化合物形成的席夫碱配体是潜在的抗氧化剂,因为它们通过氢原子转移(HAT)和单电子转移(SET)途径清除2,2-二苯基-1-苦基肼(DPPH)自由基。本综述旨在基于席夫碱配体的结构来帮助设计、合成并讨论其抗氧化活性。本研究批判性地讨论了席夫碱配体的溶剂效应以及负责DPPH清除活性的结构变化,例如质子供体、电子供体和吸电子取代基、共轭和环结构。在酚环中具有供电子取代基的配体通过易于稳定自由基而表现出更高的活性,其中一些配体的活性高于标准品。活性还取决于所使用的溶剂;在促进席夫碱质子和电子供体作用的溶剂中活性会增加。席夫碱因其广泛的应用而非常重要,这可以通过它们的抗氧化活性来解释。数据得出结论,席夫碱配体将作为合成抗氧化剂的来源。席夫碱的抗氧化活性应该有很大的研究空间。本综述将帮助研究人员研究基于席夫碱的抗氧化剂及其应用。本文分析的所有数据均来自测试;为了更清晰,补充测试和进一步研究至关重要。