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氧化铁纳米颗粒的合成、表征及应用的叙述性综述。

A narrative review of the synthesis, characterization, and applications of iron oxide nanoparticles.

作者信息

Ogbezode Joseph Ekhebume, Ezealigo Ucheckukwu Stella, Bello Abdulhakeem, Anye Vitalis Chioh, Onwualu Azikiwe Peter

机构信息

Department of Materials Science and Engineering, African University of Science and Technology, Abuja, Nigeria.

Department of Mechanical Engineering, Edo State University Uzairue, Uzairue, Edo State, Nigeria.

出版信息

Discov Nano. 2023 Oct 10;18(1):125. doi: 10.1186/s11671-023-03898-2.

Abstract

The significance of green synthesized nanomaterials with a uniform shape, reduced sizes, superior mechanical capabilities, phase microstructure, magnetic behavior, and superior performance cannot be overemphasized. Iron oxide nanoparticles (IONPs) are found within the size range of 1-100 nm in nanomaterials and have a diverse range of applications in fields such as biomedicine, wastewater purification, and environmental remediation. Nevertheless, the understanding of their fundamental material composition, chemical reactions, toxicological properties, and research methodologies is constrained and extensively elucidated during their practical implementation. The importance of producing IONPs using advanced nanofabrication techniques that exhibit strong potential for disease therapy, microbial pathogen control, and elimination of cancer cells is underscored by the adoption of the green synthesis approach. These IONPs can serve as viable alternatives for soil remediation and the elimination of environmental contaminants. Therefore, this paper presents a comprehensive analysis of the research conducted on different types of IONPs and IONP composite-based materials. It examines the synthesis methods and characterization techniques employed in these studies and also addresses the obstacles encountered in prior investigations with comparable objectives. A green engineering strategy was proposed for the synthesis, characterization, and application of IONPs and their composites with reduced environmental impact. Additionally, the influence of their phase structure, magnetic properties, biocompatibility, toxicity, milling time, nanoparticle size, and shape was also discussed. The study proposes the use of biological and physicochemical methods as a more viable alternative nanofabrication strategy that can mitigate the limitations imposed by the conventional methods of IONP synthesis.

摘要

形状均匀、尺寸减小、具有卓越机械性能、相微观结构、磁行为和卓越性能的绿色合成纳米材料的重要性无论怎样强调都不为过。在纳米材料中发现的氧化铁纳米颗粒(IONPs)尺寸范围为1至100纳米,并且在生物医学、废水净化和环境修复等领域有广泛的应用。然而,在其实际应用过程中,对其基本材料组成、化学反应、毒理学性质和研究方法的理解受到限制且需要深入阐释。采用绿色合成方法凸显了使用先进纳米制造技术生产IONPs的重要性,这些技术在疾病治疗、控制微生物病原体和消除癌细胞方面具有巨大潜力。这些IONPs可作为土壤修复和消除环境污染物的可行替代方案。因此,本文对不同类型的IONPs和基于IONP复合材料的研究进行了全面分析。它考察了这些研究中采用的合成方法和表征技术,还探讨了先前类似目标研究中遇到的障碍。提出了一种绿色工程策略,用于IONPs及其复合材料的合成、表征和应用,以减少对环境的影响。此外,还讨论了它们的相结构、磁性、生物相容性、毒性、研磨时间、纳米颗粒尺寸和形状的影响。该研究提出将生物和物理化学方法用作一种更可行的替代纳米制造策略,以减轻传统IONP合成方法所带来的限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99f5/10564704/4951f9c290ec/11671_2023_3898_Fig1_HTML.jpg

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