Dewetting upside-down: two-sided solid state dewetting of thin gold film on soft KBr substrate

Ehud Almog, Chen Nachmias, Nadav Orion, Jonathan Zimmerman, A. Bisht, L. Klinger, E. Rabkin
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Abstract

We deposited a 30 nm-thick Au film on single crystalline KBr substrate and studied the solid state dewetting behavior of the film at a temperature of 350 °C. At this temperature, the ions of the KBr compound exhibit significant mobility along the Au–KBr interface, which affects the morphology and kinetics of the solid state dewetting. We performed statistical morphology analysis of the Au–KBr interface by selectively dissolving the KBr substrate after the dewetting heat treatments and subsequent atomic force microscopy imaging of the “upside-down” oriented Au film. We demonstrated that atomic mobility at the interface leads to embedding of the partially dewetted Au film into the KBr substrate. We proposed a quantitative model of the shape evolution of a disc-shaped Au particle on the KBr substrate under the condition of finite interface mobility of the substrate species. The model predictions were consistent with the experimentally observed sinking rates of Au nanostructures.
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颠倒露化:软 KBr 基底上金薄膜的双面固态露化
我们在单晶 KBr 基底上沉积了一层 30 nm 厚的金薄膜,并研究了该薄膜在 350 °C 温度下的固态脱胶行为。在此温度下,KBr 化合物的离子沿着金-KBr 界面表现出显著的流动性,从而影响了固态露化的形态和动力学。我们对金-KBr 界面进行了统计形态分析,方法是在露凝热处理后选择性地溶解 KBr 基底,然后对 "倒置 "取向金膜进行原子力显微镜成像。我们证明,界面上的原子流动性导致部分脱蜡的金膜嵌入到 KBr 基底中。我们提出了一个定量模型,说明在基底物种的有限界面迁移率条件下,圆盘状金粒子在 KBr 基底上的形状演变。该模型的预测结果与实验观察到的金纳米结构下沉速率一致。
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