The Second Laser Revolution in Chemistry: Emerging Laser Technologies for Precise Fabrication of Multifunctional Nanomaterials and Nanostructures

IF 18.5 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY Advanced Functional Materials Pub Date : 2024-07-26 DOI:10.1002/adfm.202405457
Alina A. Manshina, Ilya I. Tumkin, Evgeniia M. Khairullina, Mizue Mizoshiri, Andreas Ostendorf, Sergei A. Kulinich, Sergey Makarov, Aleksandr A. Kuchmizhak, Evgeny L. Gurevich
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Abstract

The use of photons to directly or indirectly drive chemical reactions has revolutionized the field of nanomaterial synthesis resulting in appearance of new sustainable laser chemistry methods for manufacturing of micro‐ and nanostructures. The incident laser radiation triggers a complex interplay between the chemical and physical processes at the interface between the solid surface and the liquid or gas environment. In such a multi‐parameter system, the precise control over the resulting nanostructures is not possible without deep understanding of both environment‐affected chemical and physical processes. The present review intends to provide detailed systematization of these processes surveying both well‐established and emerging laser technologies for production of advanced nanostructures and nanomaterials. Both gases and liquids are considered as potential reacting environments affecting the fabrication process, while subtractive and additive manufacturing methods are analyzed. Finally, the prospects and emerging applications of such technologies are discussed.

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化学领域的第二次激光革命:用于精确制造多功能纳米材料和纳米结构的新兴激光技术
利用光子直接或间接地驱动化学反应,给纳米材料合成领域带来了革命性的变化,从而出现了用于制造微观和纳米结构的新型可持续激光化学方法。入射激光辐射引发了固体表面与液体或气体环境界面上化学和物理过程之间复杂的相互作用。在这种多参数系统中,如果不深入了解受环境影响的化学和物理过程,就不可能精确控制所产生的纳米结构。本综述旨在对这些过程进行详细的系统阐述,考察用于生产先进纳米结构和纳米材料的成熟和新兴激光技术。气体和液体都被视为影响制造过程的潜在反应环境,同时还分析了减法和加法制造方法。最后,还讨论了此类技术的前景和新兴应用。
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来源期刊
Advanced Functional Materials
Advanced Functional Materials 工程技术-材料科学:综合
CiteScore
29.50
自引率
4.20%
发文量
2086
审稿时长
2.1 months
期刊介绍: Firmly established as a top-tier materials science journal, Advanced Functional Materials reports breakthrough research in all aspects of materials science, including nanotechnology, chemistry, physics, and biology every week. Advanced Functional Materials is known for its rapid and fair peer review, quality content, and high impact, making it the first choice of the international materials science community.
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