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Atomic-scale tuning of self-assembled ZnO microscopic patterns: from dendritic fractals to compact island

机译:自组装氧化锌量子调谐微观模式:从树状分形紧凑的岛

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摘要

How nature uses water molecules to create fascinating patterns ranging from snowflakes to ice cubes has intrigued mankind for centuries. Here we use ZnO to mimic nature's versatility in creating microscopic patterns with tunable morphology. During growth of ZnO on Zn-dominant spheres via chemical vapor deposition, highly regular and symmetric dendritic snowflake patterns and smooth compact islands can be obtained at different growth conditions. We reproduce the dendritic patterns using atomistic Monte Carlo simulations. These findings not only improve understanding of how water molecules form various patterns, but may also be instrumental in tailoring ZnO nanostructures for desirable functionality.
机译:大自然如何使用水分子创造迷人的模式从雪花冰块人类几个世纪以来一直感兴趣的问题。这里我们使用氧化锌模仿自然的多功能性创建微观模式可调形态。球体通过化学气相沉积、高定期和对称的树突雪花模式和光滑紧凑的岛屿在不同的生长条件。使用原子论的树突繁殖模式蒙特卡罗模拟。提高水分子如何形成的理解各种各样的模式,但也可能帮助裁剪氧化锌纳米结构为可取的功能。

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