纳米颗粒
激光烧蚀
生产力
烧蚀
材料科学
激光束
克
激光器
光学
梁(结构)
纳米技术
光电子学
物理
工程类
航空航天工程
经济
细菌
宏观经济学
生物
遗传学
作者
Inna Yusnila Khairani,Maximilian Spellauge,Farbod Riahi,H. Huber,Bilal Gökce,Carlos Doñate‐Buendía
标识
DOI:10.1002/adpr.202300290
摘要
Nanoparticles (NPs) generated by pulsed‐laser ablation in liquids (PLAL) have benefited many key applications due to their versatility, enlarged surface area, and high purity. However, scaling up NPs production represents one of the main requisites to commercialize this technology. The established upscaling strategy demands high power and repetition rate laser source with fast scanning systems, which are not widely available and costly. Herein, a cost‐effective alternative is proposed, the addition of static diffractive optical elements to achieve parallel processing through the multi‐beam PLAL (MB‐PLAL). In MB‐PLAL, the optimum repetition rate is reduced to compensate laser energy splitting, hence achieving a higher interpulse distance, reducing pulse shielding, and increasing NPs productivity. MB‐PLAL with 11 beams reached a factor 4 productivity increase for iron–nickel alloy (Fe 50 Ni 50 ) NPs compared to the single‐beam setup (0.4–1.6 g h −1 ), and a factor 3 increase for gold (Au) NPs (0.32–0.94 g h −1 ). The scalability of the proposed MB‐PLAL technique setup is confirmed by Au and Fe 50 Ni 50 NPs productivity experiments using 1, 6, and 11 beams, showing a linear increase in productivity.
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