Henan Key Lab of Intelligent Manufacturing of Mechanical Equipment, Mechanical and Electrical Engineering Institute, Zhengzhou University of Light Industry, Zhengzhou 450002, China.
School of Mechanical Science & Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.
Int J Mol Sci. 2022 Nov 24;23(23):14658. doi: 10.3390/ijms232314658.
Because of their small size and large specific surface area, nanoparticles (NPs) have special properties that are different from bulk materials. In particular, Au/Ag NPs have been intensively studied for a long time, especially for biomedical applications. Thereafter, they played a significant role in the fields of biology, medical testing, optical imaging, energy and catalysis, MRI contrast agents, tumor diagnosis and treatment, environmental protection, and so on. When synthesizing Au/Ag NPs, the laser ablation and biosynthesis methods are very promising green processes. Therefore, this review focuses on the progress in the laser ablation and biological synthesis processes for Au/Ag NP generation, especially in their fabrication fundamentals and potential applications. First, the fundamentals of the laser ablation method are critically reviewed, including the laser ablation mechanism for Au/Ag NPs and the controlling of their size and shape during fabrication using laser ablation. Second, the fundamentals of the biological method are comprehensively discussed, involving the synthesis principle and the process of controlling the size and shape and preparing Au/Ag NPs using biological methods. Third, the applications in biology, tumor diagnosis and treatment, and other fields are reviewed to demonstrate the potential value of Au/Ag NPs. Finally, a discussion surrounding three aspects (similarity, individuality, and complementarity) of the two green synthesis processes is presented, and the necessary outlook, including the current limitations and challenges, is suggested, which provides a reference for the low-cost and sustainable production of Au/Ag NPs in the future.
由于纳米颗粒(NPs)的体积小、比表面积大,因此具有不同于块状材料的特殊性质。特别是,金/银纳米颗粒(Au/Ag NPs)长期以来一直受到广泛研究,特别是在生物医学应用方面。此后,它们在生物学、医学检测、光学成像、能源和催化、磁共振成像对比剂、肿瘤诊断和治疗、环境保护等领域发挥了重要作用。在合成 Au/Ag NPs 时,激光烧蚀和生物合成方法是非常有前途的绿色工艺。因此,本综述重点介绍了 Au/Ag NP 生成的激光烧蚀和生物合成工艺的进展,特别是在其制造基础和潜在应用方面。首先,批判性地回顾了激光烧蚀方法的基础,包括激光烧蚀 Au/Ag NPs 的机制以及在制造过程中通过激光烧蚀控制其尺寸和形状的方法。其次,全面讨论了生物方法的基础,涉及使用生物方法合成 Au/Ag NPs 的原理和过程,包括尺寸和形状的控制以及制备。第三,综述了在生物学、肿瘤诊断和治疗等领域的应用,以展示 Au/Ag NPs 的潜在价值。最后,围绕这两种绿色合成工艺的三个方面(相似性、个性和互补性)进行了讨论,并提出了必要的展望,包括当前的局限性和挑战,为未来 Au/Ag NPs 的低成本和可持续生产提供了参考。