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Swift heavy ion irradiation induced enhancement in the antioxidant activity and biocompatibility of polyaniline nanofibers

机译:快速重离子辐照诱导增强聚苯胺纳米纤维的抗氧化活性和生物相容性

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Polyaniline (PAni) nanofibers doped with HCl and CSA have been irradiated with 90 MeV O7+ ions with fluence of 3 x 10(10), 3 x 10(11) and 1 x 10(12) ions cm(-2). TEM micrographs show a decrease in the fiber diameter with increasing irradiation fluence, which has been explained on the basis of the Coulomb explosion model. XRD analysis reveals a decrease in the crystalline domain length and an increase in the strain. The increase in d-spacing for the (100) reflection with increasing irradiation fluence is ascribed to the increase in the tilt angle of the polymer chain, which is also evident from micro-Raman spectra. UV-vis spectra of the PAni nanofibers exhibit blue-shift in the absorption bands attributed to pi-pi* band transitions indicating a reduction in particle size after SHI irradiation; as also observed in TEM micrographs. Micro-Raman spectra also reveal a transition from the benzenoid to quinoid structures in the PAni chain as the fluence is increased. Although the quinoid unit has no hydrogen for DPPH scavenging, the antioxidant activity of PAni nanofibers is found to increase with increasing fluence. This has been attributed to the availability of more reaction sites as a result of fragmentation of the PAni nanofibers which compensates for the benzenoid to quinoid transition after irradiation. The biocompatibility of the PAni nanofibers is also found to increase with increasing irradiation fluence, indicating the possibility of employing swift heavy ion irradiation as an effective technique in order to modify conducting polymer nanostructures for biomedical applications.
机译:掺杂有HCl和CSA的聚苯胺(PAni)纳米纤维已用90 MeV O7 +离子辐照,通量分别为3 x 10(10),3 x 10(11)和1 x 10(12)cm(-2)。 TEM显微照片显示,随着辐照通量的增加,纤维直径会减小,这已在库仑爆炸模型的基础上进行了解释。 XRD分析揭示了晶畴长度的减少和应变的增加。 (100)反射的d间距随辐照通量的增加而增加,这归因于聚合物链倾斜角的增加,这也可以从微拉曼光谱中看出。 PAni纳米纤维的紫外-可见光谱在归因于pi-pi *能带跃迁的吸收带中呈现蓝移,表明SHI辐照后粒径减小。正如在TEM显微照片中观察到的。显微拉曼光谱还揭示出,随着通量的增加,PAni链中的苯状结构向醌型结构过渡。尽管醌型单元没有氢用于DPPH清除,但是发现PAni纳米纤维的抗氧化活性随着通量的增加而增加。这归因于由于PAni纳米纤维的断裂而提供了更多的反应位点,从而补偿了辐照后苯甲酸酯向醌化合物的过渡。还发现,PAni纳米纤维的生物相容性随辐照通量的增加而增加,这表明有可能采用快速重离子辐照作为一种有效技术来修饰生物医学应用中的导电聚合物纳米结构。

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