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Electric-field assisted nucleation processes of croconic acid films

机译:电磁场辅助纤巧膜的成核过程

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Growth of organic thin films using physical vapor deposition typically follows a three-dimensional mode, resulting in a rough surface, which undermines their application potential. To address this issue, we have studied the effect of electric field and temperature on the growth dynamics, especially the heterogeneous nucleation process, of croconic acid (CA) films, taking advantage of the large dipole moment of the molecules and the ferroelectric polarization of the molecular crystals. We found that the nucleation rate reaches the maximum at intermediate temperature, and the electric field shifts the maximum nucleation rate towards lower temperature. An analysis using the classical nucleation theory suggests that the electric field decreases the sublimation temperature, increases the wetting angle, and decreases the surface diffusion barrier. These results provide important insight into the growth of molecular crystal films under electric fields and pave the way to fabricating films with better surface characteristics for molecular ferroelectric films.
机译:使用物理气相沉积的有机薄膜的生长通常遵循三维模式,导致粗糙的表面,其破坏其应用势。为了解决这个问题,我们已经研究了电场和温度对生长动力学,特别是异质成核过程,鳄梨(CA)薄膜的效果,利用分子的大偶极力矩和铁电极极化分子晶体。我们发现成核速率在中间温度下达到最大值,电场将最大成核速率变为较低温度。使用经典成核理论的分析表明电场降低了升华温度,增加了润湿角度,并降低了表面扩散屏障。这些结果对电场下的分子晶体膜的生长提供了重要的洞察,并铺平了具有更好的分子铁电膜的表面特性的制造薄膜。

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