脉冲激光烧结纳米银和纳米铜的阈值能量计算

Q Physics and Astronomy Journal of the Optical Society of Korea Pub Date : 2016-10-01 DOI:10.3807/JOSK.2016.20.5.601
Changmin Lee, J. Hahn
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引用次数: 4

摘要

在本研究中,为了分析银和铜纳米颗粒的低温烧结过程,我们计算了它们的熔化温度和表面熔化温度与颗粒尺寸的关系。在这个计算中,我们引入了Shi(1994)提出的原子均方位移的概念。利用熔化熵的振动分量定义的参数,我们很容易地得到了铜和银纳米粒子的表面和整体熔化温度。我们还计算了纳米粒子的吸收截面随光波长的变化。利用计算得到的纳米粒子在熔融温度下的吸收截面,我们得到了烧结过程中与粒子尺寸和激光波长有关的激光阈值能量。我们发现银纳米粒子的吸收截面在接近350 nm的波长处有一个共振峰,产生最低的阈值能量。利用时域有限差分法计算了纳米粒子周围的强度分布,并在谐振峰波长附近确定了银纳米粒子的共振激发。
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Calculating the Threshold Energy of the Pulsed Laser Sintering of Silver and Copper Nanoparticles
In this study, in order to analyze the low-temperature sintering process of silver and copper nanoparticles, we calculate their melting temperatures and surface melting temperatures with respect to particle size. For this calculation, we introduce the concept of mean-squared displacement of the atom proposed by Shi (1994). Using a parameter defined by the vibrational component of melting entropy, we readily obtained the surface and bulk melting temperatures of copper and silver nanoparticles. We also calculated the absorption cross-section of nanoparticles for variation in the wavelength of light. By using the calculated absorption cross-section of the nanoparticles at the melting temperature, we obtained the laser threshold energy for the sintering process with respect to particle size and wavelength of laser. We found that the absorption cross-section of silver nanoparticles has a resonant peak at a wavelength of close to 350 nm, yielding the lowest threshold energy. We calculated the intensity distribution around the nanoparticles using the finite-difference time-domain method and confirmed the resonant excitation of silver nanoparticles near the wavelength of the resonant peak.
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CiteScore
0.70
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0
审稿时长
2.3 months
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