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Spontaneous explosive crystallization and phase transformations in a selenium/copper bilayer nanofilm

机译:硒/铜双层纳米膜中的自发爆炸性结晶和相变

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Spontaneous explosive crystallization in a selenium/copper bilayer nanofilm has been experimentally studied. It has been shown that the formation of a microcrack network in the selenium film is a decisive factor for spontaneous explosive crystallization. The microcrack network is an efficient channel for the relaxation of the collected energy of elastic stresses in the selenium film. The relaxation of this energy accelerates crystallization and transfers it to the explosive regime. It has been found that crystalline phases appearing in the products of the reaction after spontaneous explosive crystallization depend on the ratio of the thicknesses of the copper and selenium films.
机译:已经对硒/铜双层纳米膜中的自发爆炸性结晶进行了实验研究。已经表明,在硒膜中形成微裂纹网络是自发爆炸结晶的决定性因素。微裂纹网络是松弛硒膜中弹性应力收集能量的有效通道。该能量的弛豫加速了结晶并将其转移至爆炸状态。已经发现,自发爆炸结晶后反应产物中出现的结晶相取决于铜膜和硒膜的厚度比。

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