首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Atomic Force Microscopy Study of Self-Assembled Sodium Chloride Nanocrystallites and Their Morphology Transitions
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Atomic Force Microscopy Study of Self-Assembled Sodium Chloride Nanocrystallites and Their Morphology Transitions

机译:自组装氯化钠纳米微晶的原子力显微镜研究及其形态学转变

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Identically oriented NaCl nanocrystallites have been grown on mica surfaces based on a facile solution-evaporated method. With an increase in humidity, the morphology of the NaCl nanocrystallites evolves in succession from triangular pyramids to cubic islands and then to long lines with lengths of up to millimeters. These nanocrystallites can self-assemble into highly ordered arrays with large spatial extents of ~10 mm~2 under high humidity conditions when the value of relative humidity is higher than 40%. Their morphology transitions and self-assemblies can be understood in terms of controlled epitaxial crystallization together with water adsorption at the surface of the growing nanocrystallites.
机译:相同取向的NaCl纳米微晶已基于一种简便的溶液蒸发法在云母表面生长。随着湿度的增加,NaCl纳米晶体的形貌从三角形金字塔到立方岛,再到长至毫米的长线,依次演变。当相对湿度高于40%时,这些纳米微晶可以在高湿度条件下自组装成高度有序的阵列,其空间范围约为10 mm〜2。可以根据受控的外延结晶以及在生长的纳米晶体表面的水吸附来理解它们的形态转变和自组装。

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