偶氮染料的慢性神经效应和光催化研究

P. Rubalajyothi , A. Rajendran , Lekshmi Gangadhar , V. Pandiyan
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引用次数: 3

摘要

众所周知,医学上参与AZO染料工业的衍生品中使用了至关重要的艳红色染料作为抗惊厥剂。AZO染料通过血脑屏障的渗透性被发现是多种慢性神经系统疾病发展的一个因素。由于对环境和人体健康的潜在影响,偶氮染料在纺织废水中的存在是一个主要关注的问题。在可见光条件下,对广泛应用于纺织行业的偶氮染料进行了光催化降解研究。在本分析中,研究了在镝和铒同时过饱和的溶液中燃烧形成的混合硫化物固体的性质。Sr1-xCuxSO4纳米颗粒的排列是基于硫脲相互作用的镝和铒共掺杂的一个步骤。利用场发射扫描电镜(FESEM)、高分辨率透射电镜(HR-TEM)和x射线粉末衍射(XRD)、傅里叶变换红外光谱(FTIR)对所获得的兴奋剂成分进行了相结构和样品状态分析。通过Rietveld细化的附加数据分析允许暴露较小的晶格参数和与兴奋剂成分吸收相关的体积增加。集成Sr1-xCuxSO4共掺杂Dy3+、Er4+在有机染料(酸黑1、直接蓝15)分解和紫外光下水制氢的某些阶段表现出有效的光合作用。此外,还沉积了共掺杂的Dy、Er,并检测了它们的光合活性。结果和影响神经病学也检查在这篇文章。
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Chronic neurological effects and photocatalytic investigation of AZO dyes

The well-known medical participation of AZO dye industry derivatives in the use of vital brilliant red dye acts as an anticonvulsant. The AZO dyes permeability through the blood–brain barrier was found to be a factor in the development of a vast variety of chronic neurological diseases. Because of the potential influence on the environment and human health, the presence of AZO dyes in textile effluents is a major concern. Under visible light, we analyze the photocatalytic degradation of AZO dyes, which are widely utilized in the textile sector. In the present analysis, the properties of combustion-formed mixed sulfide solids were investigated in solutions which are supersaturated simultaneously with dysprosium and erbium. The Sr1-xCuxSO4 nanoparticles arrangement acts as a step for dysprosium and erbium co-doping based on the interactions between thiourea. The phase structure and sample states obtained of the stimulant components be analyzed by Field emission scanning electron microscopy (FESEM), High-resolution transmission electron microscopy (HR-TEM) and photosynthetic studies with X-ray powder diffraction (XRD) and Fourier-transform infrared spectroscopy (FTIR). Additional data analysis by Rietveld refinement allowed the exposure of a smaller lattice parameter and volume increase related to the absorption of stimulant components. Integrated Sr1-xCuxSO4 co-doped Dy3+, Er4+ showed effective photosynthetic presentation at some stage in decomposition of organic dyes (Acid Black 1, direct blue 15), and hydrogen production from water under ultraviolet light. In addition, Dy, Er co-doped was also deposited and their photosynthetic activities were examined. The consequences and impact on neurology are also examined in this article.

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来源期刊
Neuroscience informatics
Neuroscience informatics Surgery, Radiology and Imaging, Information Systems, Neurology, Artificial Intelligence, Computer Science Applications, Signal Processing, Critical Care and Intensive Care Medicine, Health Informatics, Clinical Neurology, Pathology and Medical Technology
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