Biosynthesis of Iron Oxide Nanoparticles Using Leaf Extract of Ruellia tuberosa: Mechanical and Dynamic Mechanical Behaviour Kevlar-Based Hybrid Epoxy Composites.

IF 4.7 3区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Bioinorganic Chemistry and Applications Pub Date : 2023-04-20 eCollection Date: 2023-01-01 DOI:10.1155/2023/1731931
L Natrayan, Yenda Srinivasa Rao, Gayatri Vaidya, Sumanta Bhattacharya, S Kaliappan, Pravin P Patil, Prabhu Paramasivam
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Abstract

One of the more enticing, ecologically responsible, as well as safe and sustainable methodologies is eco-friendly nanomaterial synthesis. Vegetation materials will be used as reductants instead of toxic substances for synthesising nanoparticles. The current study used Ruellia tuberosa (RT) leaf extract digest to synthesise FeO nanomaterials, which were then characterised using XRD. Following that, microbially produced FeO molecules were mixed with a Kevlar-based polymeric matrix to study the blended consequences. To examine the interbreeding, the current experimental analyses were performed, including both static and dynamic mechanical characteristics. The addition of FeO nanofillers improved the elastic modulus, tensile strength, and storage modulus of the nanocomposite. Impact force uptake has been raised to a certain extent by the addition of nanoparticles. The findings of this research show that incorporating FeO nanofillers into Kevlar fabrics is a promising technique for increasing the mechanical characteristics of hybrid laminated composites. As per DMA evaluation, the sample without nanomaterials had a more volcanic lava response, which is a useful thing for body systems for missile use. Another critical aspect of a nanoparticles-filled nanocomposite that must be addressed is the relatively uniform scattering of padding as well as the development of interfacial adhesion in such a combination. The presence of FeO fillers in polymeric composites is confirmed by XRD analysis.

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利用块茎芸苔叶提取物生物合成氧化铁纳米颗粒:基于 Kevlar 的混合环氧树脂复合材料的力学和动态力学行为。
生态友好型纳米材料合成法是一种更诱人、对生态负责、安全和可持续的方法。植物材料将被用作还原剂,而不是合成纳米粒子的有毒物质。本研究使用块茎鸢尾(Ruellia tuberosa,RT)叶提取物消化液合成氧化铁纳米材料,然后使用 XRD 对其进行表征。随后,将微生物生产的氧化铁分子与基于凯夫拉的聚合物基质混合,研究混合后的结果。为了检验混合效果,进行了当前的实验分析,包括静态和动态机械特性。加入氧化铁纳米填料后,纳米复合材料的弹性模量、拉伸强度和存储模量都有所提高。纳米颗粒的加入在一定程度上提高了冲击力吸收能力。这项研究结果表明,在 Kevlar 纤维中加入 FeO 纳米填料是提高混合层压复合材料机械特性的一种有效技术。根据 DMA 评估,不含纳米材料的样品具有更强的火山熔岩反应,这对用于导弹的人体系统非常有用。填充纳米粒子的纳米复合材料必须解决的另一个关键问题是填充物的相对均匀分散以及在这种组合中界面粘附力的发展。XRD 分析证实了聚合物复合材料中存在氧化铁填料。
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来源期刊
Bioinorganic Chemistry and Applications
Bioinorganic Chemistry and Applications 化学-生化与分子生物学
CiteScore
7.00
自引率
5.30%
发文量
105
审稿时长
>12 weeks
期刊介绍: Bioinorganic Chemistry and Applications is primarily devoted to original research papers, but also publishes review articles, editorials, and letter to the editor in the general field of bioinorganic chemistry and its applications. Its scope includes all aspects of bioinorganic chemistry, including bioorganometallic chemistry and applied bioinorganic chemistry. The journal welcomes papers relating to metalloenzymes and model compounds, metal-based drugs, biomaterials, biocatalysis and bioelectronics, metals in biology and medicine, metals toxicology and metals in the environment, metal interactions with biomolecules and spectroscopic applications.
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