Sadiq Muhammad Usman, Shah Afzal, Haleem Abdul, Shah Syed Mujtaba, Shah Iltaf
Department of Chemistry, Quaid-i-Azam University, Islamabad 45320, Pakistan.
School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.
Nanomaterials (Basel). 2023 Jul 6;13(13):2019. doi: 10.3390/nano13132019.
The progress in nanotechnology has effectively tackled and overcome numerous global issues, including climate change, environmental contamination, and various lethal diseases. The nanostructures being a vital part of nanotechnology have been synthesized employing different physicochemical methods. However, these methods are expensive, polluting, eco-unfriendly, and produce toxic byproducts. Green chemistry having exceptional attributes, such as cost-effectiveness, non-toxicity, higher stability, environment friendliness, ability to control size and shape, and superior performance, has emerged as a promising alternative to address the drawbacks of conventional approaches. Plant extracts are recognized as the best option for the biosynthesis of nanoparticles due to adherence to the environmentally benign route and sustainability agenda 2030 of the United Nations. In recent decades, phytosynthesized nanoparticles have gained much attention for different scientific applications. (blue gum) is an evergreen plant belonging to the family Myrtaceae, which is the targeted point of this review article. Herein, we mainly focus on the fabrication of nanoparticles, such as zinc oxide, copper oxide, iron oxide, lanthanum oxide, titanium dioxide, magnesium oxide, lead oxide, nickel oxide, gold, silver, and zirconium oxide, by utilizing extract and its essential oils. This review article aims to provide an overview of the synthesis, characterization results, and biomedical applications of nanoparticles synthesized using . The present study will be a better contribution to the readers and the students of environmental research.
纳米技术的进步有效地解决和克服了众多全球性问题,包括气候变化、环境污染和各种致命疾病。作为纳米技术重要组成部分的纳米结构已通过不同的物理化学方法合成。然而,这些方法成本高昂、污染环境、不环保且会产生有毒副产品。绿色化学具有成本效益高、无毒、稳定性高、环境友好、能够控制尺寸和形状以及性能优越等特殊属性,已成为解决传统方法缺点的一种有前途的替代方案。由于遵循环境友好路线和联合国2030年可持续发展议程,植物提取物被认为是生物合成纳米颗粒的最佳选择。近几十年来,植物合成的纳米颗粒在不同的科学应用中备受关注。蓝桉是一种属于桃金娘科的常绿植物,它是本文综述的重点对象。在此,我们主要关注利用蓝桉提取物及其精油制备纳米颗粒,如氧化锌、氧化铜、氧化铁、氧化镧、二氧化钛、氧化镁、氧化铅、氧化镍、金、银和氧化锆。这篇综述文章旨在概述使用蓝桉合成的纳米颗粒的合成、表征结果及生物医学应用。本研究将对环境研究的读者和学生做出更好的贡献。