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- W2561250151 abstract "In this study, in order to analyze the low-temperature sinteringprocess of silver and copper nanoparticles, we calculate their meltingtemperatures and surface melting temperatures with respect to particlesize. For this calculation, we introduce the concept of mean-squareddisplacement of the atom proposed by Shi (1994). Using a parameter definedby the vibrational component of melting entropy, we readily obtained thesurface and bulk melting temperatures of copper and silver nanoparticles.We also calculated the absorption cross-section of nanoparticles forvariation in the wavelength of light. By using the calculated absorptioncross-section of the nanoparticles at the melting temperature, we obtainedthe laser threshold energy for the sintering process with respect toparticle size and wavelength of laser. We found that the absorptioncross-section of silver nanoparticles has a resonant peak at a wavelengthof close to 350 nm, yielding the lowest threshold energy. We calculatedthe intensity distribution around the nanoparticles using thefinite-difference time-domain method and confirmed the resonant excitationof silver nanoparticles near the wavelength of the resonantpeak." @default.
- W2561250151 created "2017-01-06" @default.
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- W2561250151 date "2016-10-25" @default.
- W2561250151 modified "2023-10-18" @default.
- W2561250151 title "Calculating the Threshold Energy of the Pulsed Laser Sintering of Silver and Copper Nanoparticles" @default.
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- W2561250151 doi "https://doi.org/10.3807/josk.2016.20.5.601" @default.
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