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Antioxidant activity and haemolysis prevention efficiency of polyaniline nanofibers

机译:聚苯胺纳米纤维的抗氧化活性及防溶血效果

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Polyaniline (PAni) nanofibers have been synthesized by interfacial polymerization using hydrochloric acid (HCl) and camphor sulfonic acid (CSA) as dopants. The powder x-ray diffraction pattern of bulk polyaniline reveals ES I structure and has been indexed in a pseudo-orthorhombic lattice. The broadening of (110) reflection in the nanofiber samples has been analysed in terms of domain length and strain using a convolution method employing a Voigt function. The increase in d spacing for the (110) reflection in HCl-doped PAni nanofibers have been assigned to the change in structural conformation due to the increase in the tilt angle of the polymer chain, which is also evident from microRaman spectra. UV-vis spectra of the PAni nanofibers exhibit a remarkable blueshift in the absorption bands attributed to pi-pi* and pi-polaron band transitions indicating a reduction in particle size, which is also observed in TEM micrographs. The antioxidant activity of the polyaniline nanofiber samples has been investigated using 1,1-diphenyl-2-picrylhydrazyl ( DPPH) scavenging assay by employing UV-visible spectroscopy. It has also been observed that polyaniline nanofibers are able to protect the haemolysis of red blood cells (RBCs) from cytotoxic agents, namely H2O2. The observed enhancement in the antioxidant and haemolysis prevention activity of the PAni nanofibers as compared to bulk has been attributed to the reduction in particle size and changes in structural conformation, as evident from TEM, XRD and microRaman spectroscopy.
机译:聚苯胺(PAni)纳米纤维已经通过使用盐酸(HCl)和樟脑磺酸(CSA)作为掺杂剂的界面聚合反应合成。散装聚苯胺的粉末X射线衍射图显示ES I结构,并已在拟斜方晶格中进行索引。纳米纤维样品中(110)反射的展宽已通过采用Voigt函数的卷积方法根据畴长和应变进行了分析。 HCl掺杂的PAni纳米纤维中(110)反射的d间距增加已归因于聚合物链倾斜角增加引起的结构构象变化,这也从微拉曼光谱中可以明显看出。 PAni纳米纤维的紫外可见光谱在归因于pi-pi *和pi-极化子带跃迁的吸收带中表现出显着的蓝移,表明粒径减小,这也在TEM显微照片中观察到。聚苯胺纳米纤维样品的抗氧化活性已经通过1,1-二苯基-2-吡咯并肼(DPPH)清除试验通过紫外可见光谱进行了研究。还已经观察到,聚苯胺纳米纤维能够保护红细胞(RBC)的溶血不受细胞毒性剂H2O2的破坏。与本体相比,PAni纳米纤维的抗氧化剂和溶血预防活性得到增强,这归因于粒径的减小和结构构象的变化,这从TEM,XRD和显微拉曼光谱学可以明显看出。

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