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Laser Annealing Nanoscale Carbons: Material Transformations

机译:激光退火纳米碳:材料转变

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Laser processing of materials is not new, but using lasers to anneal, bond and otherwise transform carbons is. Fundamental understanding of the dependence upon carbon structure, morphology and chemistry is critical to implementing this technology into manufacturing and processing applications. Here initial results using pulsed laser annealing of nanocarbons are performed using a Nd:YAG laser operating at 1064 nm and laser fluence of 250 mJ/cm2. A gated intensified CCD captured the spectra of the material incandescence, fitting the spectral profile yielded a temperature of 2800 K for this laser fluence. To resolve detailed morphological and nanostructural changes induced in the nanocarbons by the pulsed, high-intensity laser light, high-resolution transmission electron microscopy (HRTEM) is applied while electron energy loss spectroscopy (EELS) is applied to examine local sp~2/sp~3 chemistry. The annealing process accentuated the recognizable structural differences and led to graphitization of lamellae, but the spatial organization of lamellae was quite different across carbons tested. Initial nanostructure in conjunction with the chemistry of construction appears to govern the carbon transformation under pulsed laser annealing.
机译:对材料进行激光加工并不是什么新鲜事物,但是使用激光对碳进行退火,键合和其他方式的转化却是新颖的。对碳结构,形态和化学的依赖性的基本理解对于在制造和加工应用中实施该技术至关重要。在此,使用在1064 nm处工作的Nd:YAG激光器和250 mJ / cm2的激光通量进行了使用纳米碳的脉冲激光退火的初步结果。门控增强型CCD捕获了材料白炽光的光谱,对该光谱通量进行拟合后,该激光通量的温度为2800K。为了解决由脉冲高强度激光在纳米碳中诱导的详细形态和纳米结构变化,应用了高分辨率透射电子显微镜(HRTEM),同时应用了电子能量损失谱(EELS)来检查局部sp〜2 / sp 〜3化学。退火过程加剧了可识别的结构差异,并导致了薄片的石墨化,但是薄片的空间组织在所测试的碳之间差异很大。初始的纳米结构与结构的化学作用似乎决定了脉冲激光退火下的碳转化。

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