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首页> 外文期刊>Japanese journal of applied physics >Nucleation mechanism of metal-vapor atoms on photochromic diarylethene surface with a low glass transition temperature
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Nucleation mechanism of metal-vapor atoms on photochromic diarylethene surface with a low glass transition temperature

机译:低玻璃化转变温度的光致变色二芳基乙烯表面上金属蒸气原子的成核机理

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摘要

Metal pattern formation on organic surfaces is essential in organic electronics. Selective metal-vapor deposition using photochromic diarylethene (DAE) is a promising method to prepare fine metal patterns by maskless evaporation. Metal-vapor atoms are adsorbed, diffused, and then desorbed from the colorless surface with a low glass transition temperature. We, however, found that metal deposition started at a specific time (deposition-threshold time, t(th)) even on the colorless surface by continuous evaporation. t(th) was investigated using a quartz crystal microbalance. We elucidated that metal-nucleation sites were generated by chemical reactions between metal atoms and surface DAE molecules. The number of nucleation sites increases during metal evaporation and when the sites are located in the diffusion range of surface metal atoms, metal-atom nucleation for film-formation starts. This is the origin of t(th). This result would provide important knowledge for the preparation of electrodes for organic devices based on selective metal-vapor deposition. (C) 2018 The Japan Society of Applied Physics
机译:在有机表面上形成金属图案对于有机电子产品至关重要。使用光致变色二芳基乙烯(DAE)的选择性金属气相沉积是一种通过无掩模蒸发制备精细金属图案的有前途的方法。金属蒸气原子被吸收,扩散,然后以低的玻璃化转变温度从无色表面解吸。然而,我们发现,即使在无色表面上,通过连续蒸发,金属沉积也会在特定时间(沉积阈值时间,t(th))开始。使用石英晶体微量天平研究t(th)。我们阐明了金属成核位点是由金属原子与表面DAE分子之间的化学反应产生的。在金属蒸发期间成核位点的数量增加,并且当这些位点位于表面金属原子的扩散范围内时,用于成膜的金属原子成核开始。这是t(th)的来源。该结果将为基于选择性金属气相沉积的有机器件电极的制备提供重要的知识。 (C)2018日本应用物理学会

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