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Green synthesis of copper oxide nanoparticles for biomedical application and environmental remediation

机译:生物医学应用氧化铜纳米粒子的绿色合成及环境修复

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摘要

Recent development in nanoscience and nanotechnology has contributed to the wide applications of metal and metal oxides nanoparticles in several field of sciences, research institutes and industries. Among all metal oxides, copper oxide nanoparticles (CuONPs) has gained more attention due to its distinctive properties and applications. The high cost of reagents, equipment and environmental hazards associated with the physical and chemical methods of synthesizing CuONPs has been a major setback. In order to puffer solution to the aforementioned challenges by reducing environmental pollution and production of cheaper nanoparticles with good properties and efficiency, this review focus on collection of comprehensive information from recent developments in the synthesis, characterization and applications from previous scientific findings on biological method of synthesizing CuONPs due to the acclaimed advantages of been cheap, environmentally friendly, convenient and possibility of been scale up in into large scale production reported by numerous researchers. Our finding also support the synthesis of CuONPs from plant sources due to relative abundance of plants for the production of reducing and stabilizing agents required for CuONPs synthesis, potential efficiency of plant biomolecules in enhancing the toxicity effect of CuONPs against microbes, prevention of environmental pollution due of nontoxic chemicals and degradation effectiveness of CuONPs synthesized from plant sources. Furthermore, this study provide useful information on the rapid synthesis of CuONPs with desired properties from plant extracts.
机译:纳米科学和纳米技术的最新发展有助于金属和金属氧化物纳米粒子在几种科学,研究机构和行业中的广泛应用。在所有金属氧化物中,由于其独特的性能和应用,氧化铜纳米颗粒(CuOnps)已经更加关注。与合成CUONPS的物理和化学方法相关的试剂,设备和环境危害的高成本是一个重大挫折。为了通过减少具有良好性质和效率的环境污染和生产更便宜的纳米粒子的环境污染和生产,普遍解决上述挑战,本综述重点是从最近的综合发展信息收集综合信息,从先前科学发现就生物方法的生物学方法中的综合发展,特征和应用综合CUONPS由于众多研究人员报告的大规模生产规模便宜,环保,方便,方便,有可能扩大的优势。我们的发现还支持植物来源的CuOnps的合成,因为植物的相对丰富的植物,用于生产CuONP合成所需的还原剂,植物生物分子的潜在效率,在提高CUONP对微生物的毒性作用,预防环境污染从植物来源合成的Cuonps的无毒化学品和降解效果。此外,该研究提供了有关从植物提取物的所需性质的快速合成CuOnP的有用信息。

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