A Review of Bimetallic and Monometallic Nanoparticle Synthesis via Laser Ablation in Liquid

Author:

Nyabadza Anesu123ORCID,Vazquez Mercedes124,Brabazon Dermot123

Affiliation:

1. I-Form Advanced Manufacturing Centre Research, Dublin City University, D09 W6Y4 Dublin, Ireland

2. EPSRC & SFI Centre for Doctoral Training (CDT) in Advanced Metallic Systems, School of Mechanical & Manufacturing Engineering, Dublin City University, D09 W6Y4 Dublin, Ireland

3. Advanced Processing Technology Research Centre, Dublin City University, D09 W6Y4 Dublin, Ireland

4. School of Chemical Sciences, Dublin City University, D09 W6Y4 Dublin, Ireland

Abstract

Pulsed laser ablation in liquid (PLAL) is a physical and top-down approach used to fabricate nanoparticles (NPs). Herein, the research methods and current trends in PLAL literature are reviewed, including the recent uses of PLAL for fabricating bimetallic nanoparticles (BNPs) and composites. BNPs have gained attention owing to their advanced physicochemical properties over monometallic NPs. PLAL involves the irradiation of a solid target (usually a rod, plate, or thin film) under a liquid medium. The liquid collects the ejected NPs resulting from the laser processing, which produces a colloid that can be in various applications, including plasmon sensing, energy harvesting, and drug delivery. The most used fabrication techniques, including the use of microorganisms, do not have precise NP size control and require the separation of the microorganisms from the produced NPs. PLAL is quicker at producing NPs than bottom-up methods. The drawbacks of PLAL include the need to find the required laser processing parameters, which requires extensive experimentation, and the complex and non-linear relationships between the inputs and the outputs (e.g., NP size).

Funder

Science Foundation Ireland

European Regional Development Fund

Publisher

MDPI AG

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering

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