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首页> 外文期刊>Journal of Crystallization Process and Technology >Au Nanoparticle Formation from Amorphous Au/Si Multilayer
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Au Nanoparticle Formation from Amorphous Au/Si Multilayer

机译:由非晶金/硅多层膜形成金纳米颗粒

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By direct observations of transmission electron microscopy (TEM), irreversible morphological transformations of as-deposited amorphous Au/Si multilayer (a-Au/a-Si) were observed on heating. The well arrayed sequence of the multilayer changed to zigzag layered structure at 478 K (=Tzig). Finally, the zigzag structure transformed to Au nanoparticles at 508 K. The distribution of the Au nanoparticles was random within the thin film. In situ X-ray diffraction during heating can clarify partial crystallization Si (c-Si) in the multilayer at 450 K (= ), which corresponds to metal induced crystallization (MIC) from amorphous Si (a-Si) accompanying by Au diffusion. On further heating, a-Au started to crystallize at around 480 K (=Tc) and gradually grew up to 3.2 nm in radius, although the volume of c-Si was almost constant. Continuous heating caused crystal Au (c-Au) melting into liquid AuSi (l-AuSi) at 600 K (= ), which was lower than bulk eutectic temperature ( ). Due to the AuSi eutectic effect, reversible phase transition between liquid and solid occurred once temperature is larger than . Proportionally to the maximum temperatures at each cycles (673, 873 and 1073 K), both and Au crystallization temperature approaches to . Using a thermodynamic theory of the nanoparticle formation in the eutectic system, the relationship between and the nanoparticle size is explained.
机译:通过透射电子显微镜(TEM)的直接观察,在加热时观察到沉积态非晶Au / Si多层膜(a-Au / a-Si)的不可逆形态变化。多层的排列良好的序列在478 K(= Tzig)下变为锯齿状的分层结构。最终,之字形结构在508 K下转变为Au纳米颗粒。Au纳米颗粒在薄膜中的分布是随机的。加热过程中的原位X射线衍射可以澄清多层晶体在450 K(=)处的部分结晶Si(c-Si),这对应于由Au扩散伴随的非晶硅(a-Si)的金属诱导结晶(MIC)。进一步加热后,尽管c-Si的体积几乎恒定,但a-Au在480 K(= Tc)附近开始结晶,并逐渐增长到半径为3.2 nm。连续加热导致晶体Au(c-Au)在600 K(=)熔化成液态AuSi(l-AuSi),低于整体共晶温度()。由于AuSi共晶效应,一旦温度大于,就会发生液体和固体之间的可逆相变。与每个循环的最高温度(673、873和1073 K)成正比,Au的结晶温度都接近。使用共晶体系中纳米粒子形成的热力学理论,解释了纳米粒子与纳米粒子尺寸之间的关系。

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