首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Water-triggered spontaneous surface patterning in thin films of mexylaminotriazine molecular glasses
【24h】

Water-triggered spontaneous surface patterning in thin films of mexylaminotriazine molecular glasses

机译:甲基氨基三嗪分子玻璃薄膜中水触发的自发表面图案

获取原文
获取原文并翻译 | 示例
       

摘要

Surface patterning that occurs spontaneously during the formation of a thin film is a powerful tool for controlling film morphology at the nanoscale level because it avoids the need for further processing. However, one must first learn under which conditions these patterning phenomena occur or not, and how to achieve control over the surface morphologies that are generated. Mexylaminotriazine-based molecular glasses are small molecules that can readily form amorphous thin films. It was discovered that this class of materials can either form smooth films, or films exhibiting either dome or pore patterns. Depending on the conditions, these patterns can be selectively obtained during film deposition by spin-coating. It was determined that this behavior is controlled by the presence of water or, more generally, of a solvent in which the compounds are insoluble, and that the relative amount and volatility of this poor solvent determines which type of surface relief is obtained. Moreover, AFM and FT-IR spectroscopy have revealed that the thin films are amorphous independently of surface morphology, and no difference was observed at the molecular or supramolecular level. These findings make this class of materials and this patterning approach in general extremely appealing for the control of surface morphology with organic nanostructures.
机译:在薄膜形成过程中自发发生的表面图案化是控制纳米级薄膜形态的有力工具,因为它避免了进一步处理的需要。但是,必须首先了解在哪些条件下会发生这些构图现象,以及如何实现对所生成表面形貌的控制。基于Mexylaminotriazine的分子玻璃是可以轻易形成非晶薄膜的小分子。已经发现,这类材料可以形成光滑的膜,或者具有圆顶或孔图案的膜。根据条件,可以通过旋涂在膜沉积期间选择性地获得这些图案。可以确定这种行为是由水的存在,或更普遍地是化合物不溶于其中的溶剂的存在来控制的,并且这种不良溶剂的相对量和挥发性决定了获得哪种类型的表面浮雕。而且,AFM和FT-IR光谱表明,薄膜是无定形的,与表面形态无关,并且在分子或超分子水平上没有观察到差异。这些发现使得这类材料和这种构图方法对于控制具有有机纳米结构的表面形态极为有吸引力。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号