在液体中通过脉冲激光烧蚀合成低维纳米材料

APL Materials Pub Date : 2024-05-01 DOI:10.1063/5.0199104
Fan Ye, Kevin P. Musselman
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引用次数: 0

摘要

随着功能性纳米材料在众多领域的应用日益广泛,人们一直致力于探索简单高效的纳米材料合成方法。液体脉冲激光烧蚀(PLAL)就是一种生产胶体纳米材料的新型技术。它设置简单、操作方便,可在室温和大气环境下进行。这种方法利用脉冲激光束烧蚀不同液体中的块状目标或粉末,从而产生胶体纳米材料。因此,它在可扩展加工方面前景广阔。然而,尽管包括零维量子点、一维纳米线和纳米管以及二维纳米片和纳米球在内的低维纳米材料在光电设备、催化和生物医学等各种应用中得到了更多的使用,但有关 PLAL 的先前研究大多集中在较大球形纳米颗粒的合成上。在 PLAL 过程中,高强度激光脉冲不仅能使被照亮的固体碎裂,产生纳米材料,还能与液体分子相互作用,产生多种活性离子进行化学反应。因此,还可以生成各种低维纳米材料。本研究全面综述了通过 PLAL 合成的低维纳米材料,包括其形成机理和应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis of low dimensional nanomaterials by pulsed laser ablation in liquid
With the increasing application of functional nanomaterials in numerous fields, considerable effort has been devoted to exploring simple and efficient methods for their synthesis. Pulsed laser ablation in liquid (PLAL) is one such novel technique for producing colloidal nanomaterials. It is simple to setup, easy to operate, and can be carried out at room temperature and under atmosphere. This method employs a pulsed laser beam to ablate bulk targets or powders within different liquids, thereby creating colloidal nanomaterials. As a result, it holds significant promise for scalable processing. However, most prior research on PLAL has focused on the synthesis of larger spherical nanoparticles, even though low-dimensional nanomaterials, including zero-dimensional quantum dots, one-dimensional nanowires and nanotubes, and two-dimensional nanosheets and nanobelts, find more usage in various applications, such as optoelectronic devices, catalysis, and biomedicine. In the PLAL process, the high-intensity laser pulses not only fragment the illuminated solids to produce nanomaterials but also interact with liquid molecules, generating multiple reactive ions for chemical reactions. Consequently, various low-dimensional nanomaterials can also be generated. This study provides a comprehensive review of low-dimensional nanomaterials synthesized via PLAL, including their formation mechanisms and applications.
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