Nanomaterials via Laser Ablation/Irradiation in Liquid: A Review
Наноматериалы методом лазерной абляции/облучения в жидкости: обзор
2012-02-06
SCID: 54.1/9pnuv56c
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functionalized nanostructuresgreen synthesislaser ablation in liquid (LAL)laser irradiation of colloidsnanoparticles synthesis
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Abstract (AI)
Abstract Laser ablation of solid targets in the liquid medium can be realized to fabricate nanostructures with various compositions (metals, alloys, oxides, carbides, hydroxides, etc.) and morphologies (nanoparticles, nanocubes, nanorods, nanocomposites, etc.). At the same time, the post laser irradiation of suspended nanomaterials can be applied to further modify their size, shape, and composition. Such fabrication and modification of nanomaterials in liquid based on laser irradiation has become a rapidly growing field. Compared to other, typically chemical, methods, laser ablation/irradiation in liquid (LAL) is a simple and “green” technique that normally operates in water or organic liquids under ambient conditions. Recently, the LAL has been elaborately developed to prepare a series of nanomaterials with special morphologies, microstructures and phases, and to achieve one‐step formation of various functionalized nanostructures in the pursuit of novel properties and applications in optics, display, detection, and biological fields. The formation mechanisms and synthetic strategies based on LAL are systematically analyzed and the reported nanostructures derived from the unique characteristics of LAL are highlighted along with a review of their applications and future challenges.
Key Findings
1
LAL is a simple, green technique operating in water or organic liquids under ambient conditions, offering advantages over typical chemical methods.
2
Laser ablation/irradiation in liquid (LAL) fabricates nanomaterials with diverse compositions (metals, alloys, oxides, carbides, hydroxides) and morphologies (nanoparticles, nanocubes, nanorods, nanocomposites).
3
Post-laser irradiation of suspended nanomaterials enables further modification of size, shape, and composition.
4
Recent developments in LAL allow one-step formation of functionalized nanostructures with special morphologies, microstructures, and phases for optics, display, detection, and biological applications.
5
The review systematically analyzes LAL formation mechanisms, synthetic strategies, reported unique nanostructures, applications, and outlines future challenges.
Research Object
Nanomaterials fabricated and modified by laser ablation/irradiation in liquid (LAL) processes
Research Subject
Formation mechanisms, synthetic strategies, morphology/microstructure/phase control and resulting functional properties and applications of LAL-produced nanomaterials
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2012-02-06
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