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超声化学法在无机纳米材料合成中的最新进展:氧化铁、金和氧化铁包覆金纳米粒子的综合评述。

Recent Advances in Inorganic Nanomaterials Synthesis Using Sonochemistry: A Comprehensive Review on Iron Oxide, Gold and Iron Oxide Coated Gold Nanoparticles.

机构信息

Nano-Biotechnology Research and Innovation (NanoBRI), Institute for Research in Molecular Medicine (INFORMM), Universiti Sains Malaysia, Pulau Pinang 11800, Malaysia.

Nano-Optoelectronics Research and Technology Lab (NORLab), School of Physics, Universiti Sains Malaysia, Pulau Pinang 11800, Malaysia.

出版信息

Molecules. 2021 Apr 22;26(9):2453. doi: 10.3390/molecules26092453.

Abstract

Sonochemistry uses ultrasound to improve or modify chemical reactions. Sonochemistry occurs when the ultrasound causes chemical effects on the reaction system, such as the formation of free radicals, that intensify the reaction. Many studies have investigated the synthesis of nanomaterials by the sonochemical method, but there is still very limited information on the detailed characterization of these physicochemical and morphological nanoparticles. In this comprehensive review, recent advances in the sonochemical synthesis of nanomaterials based on iron oxide nanoparticles (FeONP), gold nanoparticles (AuNP) and iron oxide-coated gold nanoparticles (FeO@Au NP) are discussed. These materials are the most studied materials for various applications, such as medical and commercial uses. This review will: (1) address the simple processing and observations on the principles of sonochemistry as a starting point for understanding the fundamental mechanisms, (2) summarize and review the most relevant publications and (3) describe the typical shape of the products provided in sonochemistry. All in all, this review's main outcome will provide a comprehensive overview of the available literature knowledge that promotes and encourages future sonochemical work.

摘要

声化学利用超声波来改善或修饰化学反应。当超声波对反应体系产生化学效应时,就会发生声化学,例如自由基的形成,这会加剧反应。许多研究已经调查了通过声化学方法合成纳米材料,但对于这些物理化学和形态纳米粒子的详细特征仍知之甚少。在这篇全面的综述中,讨论了基于氧化铁纳米粒子(FeONP)、金纳米粒子(AuNP)和氧化铁包覆金纳米粒子(FeO@Au NP)的纳米材料的声化学合成的最新进展。这些材料是研究最多的用于各种应用的材料,例如医疗和商业用途。本综述将:(1)以声化学的简单处理和观察为起点,探讨其基本原理,(2)总结和回顾最相关的出版物,(3)描述声化学中提供的典型产品形状。总的来说,这篇综述的主要成果将提供对现有文献知识的全面概述,以促进和鼓励未来的声化学工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd1d/8122858/0af4dc7ff947/molecules-26-02453-g001.jpg

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