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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis, characterization and application of enrofloxacin complexes as thermal stabilizers for rigid poly(vinyl chloride)
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Synthesis, characterization and application of enrofloxacin complexes as thermal stabilizers for rigid poly(vinyl chloride)

机译:恩诺沙星复合物作为硬质聚氯乙烯热稳定剂的合成,表征和应用

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摘要

Synthesis and characterization of both binary Co(ii)- (1), Ni(ii)- (2) complexes with enrofloxacin drug (HL 1) and ternary Co(ii)- (3), Ni(ii)- (4) complexes in presence of dl-alanine (H _2L _2) are reported using physico-chemical techniques. The antimicrobial activity of these complexes has been screened against two Gram-positive and two Gram-negative bacteria. Antifungal activity against two different fungi has been evaluated and compared with reference drug. All the binary and ternary complexes showed remarkable potential antimicrobial activity higher than the recommended standard agents. Ni(ii)- complexes exhibited higher potency as compared to the parent drug against bacterial and fungal strain. In addition, it was of interest to investigate the reported complexes as thermal stabilizers and co-stabilizers for rigid PVC in air at 180°C. Their high stabilizing efficiency is detected by their high induction period values (T _s) compared with some of the common reference stabilizers used industrially, such as dibasic lead carbonate (DBLC) and calcium-zinc soap. Blending these complexes with some of the reference stabilizers in different ratios had a synergistic effect on both induction period as it gave better thermal stability and lower extent of discoloration. The stabilizing efficiency is attributed at least partially to the ability of the metal complex stabilizer to be incorporated in the polymeric chains, thus disrupting the chain degradation and replace the labile chlorine atoms on PVC chains by a relatively more s moiety of the inorganic stabilizer. Their amenability to use as a biomedical additives for PVC, has afforded them great potential for various medical applications.
机译:恩诺沙星药物(HL 1)和三元Co(ii)-(3),Ni(ii)-(4)的二元Co(ii)-(1),Ni(ii)-(2)配合物的合成与表征使用理化技术报道了在存在dl-丙氨酸(H _2L _2)的情况下的复合物。这些复合物的抗菌活性已针对两种革兰氏阳性细菌和两种革兰氏阴性细菌进行了筛选。已经评估了针对两种不同真菌的抗真菌活性,并与参考药物进行了比较。所有二元和三元复合物均显示出显着的潜在抗菌活性,高于推荐的标准试剂。与母体药物相比,Ni(ii)-络合物显示出更高的针对细菌和真菌菌株的效力。另外,研究报道的复合物作为硬质PVC在180°C的空气中的热稳定剂和助稳定剂也很有意义。与工业上使用的一些常见的参考稳定剂(如碳酸氢钙(DBLC)和钙锌皂)相比,它们的高诱导期值(T s)可检测到它们的高稳定效率。将这些配合物与某些参考稳定剂以不同比例混合,对两个诱导期都有协同作用,因为它具有更好的热稳定性和较低的变色程度。稳定效率至少部分归因于金属络合物稳定剂结合到聚合物链中的能力,从而破坏了链的降解并用相对更多的无机稳定剂部分取代了PVC链上的不稳定氯原子。它们适合用作PVC的生物医学添加剂,为它们在各种医疗应用中提供了巨大的潜力。

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