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首页> 外文期刊>Journal of Materials Engineering and Performance >Investigations on the Influence of Liquid-Assisted Laser Ablation of NiTi Rotating Target to Improve the Formation Efficiency of Spherical Alloyed NiTi Nanoparticles
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Investigations on the Influence of Liquid-Assisted Laser Ablation of NiTi Rotating Target to Improve the Formation Efficiency of Spherical Alloyed NiTi Nanoparticles

机译:液体辅助旋转靶液辅助激光烧蚀影响提高球形合金氮纳米粒子的形成效率的研究

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In this work, the liquid-assisted laser ablation of NiTi rotating target has been used as a promising technique for generating spherical NiTi alloy nanoparticles with higher formation efficiency. Nd: YAG nanosecond laser with three different laser wavelengths (355, 532 and 1064 nm), three different laser fluences (30, 40 and 50 J/cm(2)) and three different rotational speeds (10 RPM, 20 RPM and 30 RPM) of target has been used to ablate the nitinol (Ni-55%, Ti-45%) target. The influences of different laser parameters (wavelengths and fluences) and different RPMs have been studied on the size, morphology and formation of alloy nanoparticles. It has been observed that the formation efficiency is maximum (39.9 mg/h) for smaller size nanoparticle (similar to 40 nm) at 355 nm wavelength, 50 J/cm(2) fluence and 10 RPM rotational speed. On the other hand, we find that the formation efficiency (10.5 mg/h) is lowest with a bigger size of nanoparticle (similar to 110 nm) at 1064 nm wavelength, 50 J/cm(2) fluence and 30 RPM speed. Therefore, this is a promising technique to synthesize spherical alloy nanoparticles with higher ablation efficiency. Thus, the higher ablation of particles helps to improve the optical absorption of the colloidal solution as optical absorption has a direct relation with the particle concentration. The shape and size of particles were characterized through SEM and DLS analysis whereas the crystallinity was confirmed through TEM and XRD analysis, respectively. Moreover, the elemental analysis was done with the help of XPS and EDS and optical absorption through UV-Vis spectrum analysis.
机译:在这项工作中,NITI旋转靶的液体辅助激光消融已被用作具有更高形成效率的球形NITI合金纳米颗粒的有希望的技术。 ND:YAG纳秒激光器,具有三种不同的激光波长(355,532和1064nm),三种不同的激光流量(30,40和50 j / cm(2))和三种不同的转速(10rpm,20rpm和30rpm )目标已被用于烧蚀硝基戊烯醇(Ni-55%,Ti-45%)靶标。已经研究了不同激光参数(波长和流量)和不同RPM的影响,对合金纳米粒子的尺寸,形貌和形成。已经观察到形成效率最大(39.9mg / h),用于较小尺寸的纳米颗粒(类似于40nm),在355nm波长,50J / cm(2)流量和10rpm转速下。另一方面,我们发现形成效率(10.5 mg / h)最低,纳米粒子尺寸较大(类似于110nm),在1064nm波长,50 j / cm(2)流量和30rpm速度下。因此,这是一种具有更高烧蚀效率的球形合金纳米颗粒合成的有希望的技术。因此,颗粒的较高消融有助于改善胶体溶液的光学吸收,因为光学吸收具有与颗粒浓度的直接关系。通过SEM和DLS分析表征粒子的形状和尺寸,而分别通过TEM和XRD分析证实了结晶度。此外,通过UV-Vis光谱分析,借助XPS和EDS和光学吸收来完成元素分析。

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