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Melting and Recrystallization of Copper Nanoparticles Prepared by Microwave-Assisted Reduction in the Presence of Triethylenetetramine

机译:在三亚乙基四胺存在下通过微波辅助还原制备的铜纳米粒子的熔融和重结晶

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摘要

The small sized copper nanoparticles (Cu-NPs), prepared in the presence of triethylene tetramine (TETA) and assisted with microwave irradiation, have an extremely low melting temperature. Melting of the small sizezd Cu-NPs can be triggered by the heat generated from the e-beam irradiation during SEM and TEM image construction. The dispersed Cu atoms around the agglomerated big Cu particles can undergo recrystallization immediately due to the strong driving force of the huge temperature difference to normal melting temperature (T = 1085 °C). Some of the Cu-NPs with bigger sizes also recrystallize and agglomerate into dense, big particles. According to X-ray diffraction patterns, these particles can agglomerate into compact, ordered Cu crystals in less than five minutes at 60 °C. The melting and recrystallization related endothermic and exothermic phase transitions of Cu-NPs can be found from differential scanning calorimeter (DSC) thermograms and optical microscopic pictures.
机译:在三亚乙基四胺(TETA)存在下制备并借助微波辐射辅助的小尺寸铜纳米颗粒(Cu-NPs)的熔融温度极低。在SEM和TEM图像构建过程中,电子束辐照产生的热量可触发小尺寸Cu-NP的熔化。由于巨大的温差到正常熔化温度(T = 1085°C)的强大驱动力,聚集的大Cu颗粒周围的分散Cu原子可以立即进行重结晶。一些较大尺寸的铜纳米颗粒也会重结晶并聚集成致密的大颗粒。根据X射线衍射图,这些颗粒可以在60°C下不到五分钟的时间内聚集成紧密的有序Cu晶体。可以从差示扫描量热仪(DSC)的热分析图和光学显微图片中发现与Cu-NPs熔化和重结晶有关的吸热和放热相变。

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