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Effect of Heat Accumulation on Femtosecond Laser Reductive Sintering of Mixed CuO/NiO Nanoparticles

机译:蓄热对混合CuO / NiO纳米粒子的飞秒激光还原烧结的影响

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摘要

Direct laser-writing techniques have attracted attention for their use in two- and three-dimensional printing technologies. In this article, we report on a micropatterning process that uses femtosecond laser reductive sintering of mixed CuO/NiO nanoparticles. The writing speed, laser fluence, and incident total energy were varied to investigate the influence of heat accumulation on the micropatterns formed by these materials. Heat accumulation and the thermal history of the laser irradiation process significantly affected the material composition and the thermoelectric properties of the fabricated micropatterns. Short laser irradiation durations and high laser fluences decrease the amount of metal oxide in the micropatterns. Selective fabrication of p-type and n-type thermoelectric micropatterns was demonstrated to be possible with control of the reduction and reoxidization reactions through the control of writing speed and total irradiation energy.
机译:直接激光写入技术引起了他们在两维印刷技术中使用的关注。在本文中,我们报告了一种使用混合Cuo / NiO纳米粒子的飞秒激光还原烧结的微型解剖程序。改变了写入速度,激光流量和入射总能量,以研究热量积聚对这些材料形成的微图案的影响。激光照射过程的热量积聚和热历史会显着影响制造的微图案的材料组成和热电性能。短的激光照射持续时间和高激光流量会降低微图案中的金属氧化物的量。通过控制书写速度和总照射能量,对P型和N型热电微图案的选择性制造有可能控制减少和再氧化反应。

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