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Nanoimprint-induced molecular stacking and pattern stabilization in a solution-processed subphthalocyanine film

机译:溶液加工的亚酞菁薄膜中的纳米压印诱导分子堆积和图案稳定

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摘要

We present a systematic study on the thermal nanoimprinting of a boron subphthalocynamine molecule, 2-allylphenoxy-(subphthalocyaninato)boron(III) (SubPc-A), which represents a class of attractive small-molecular weight organic compounds for organic-based photovoltaics (OPV). The final equilibrium imprinted feature profile strongly depends on the imprinting temperature. The highest feature aspect ratio (or contrast) occurs at a specific window of imprinting temperatures (80-90 °C). X-ray diffraction indicates that the nanoimprint at such a temperature window can induce high-degree molecular stacking, which can help stabilize the imprinted features. Outside this window, we observed a pronounced relaxation of imprinted features after template removal, which is attributed to the surface diffusion. Key factors affecting the final equilibrium profile of the imprinted features were simulated. From the simulation, it was found that the crystallization-induced anisotropy of surface energy stabilized imprinted features. Simulated parameters such as stable feature aspect ratio and pitch agree well with experimental data. Such work provides an important guideline for optimizing the nanopatterning of small-molecular-weight organic compounds.
机译:我们目前对硼亚邻苯二甲胺分子2-烯丙基苯氧基-(亚酞菁基)硼(III)(SubPc-A)的热纳米压印进行系统研究,该分子代表了一类用于有机光伏的有吸引力的小分子量有机化合物( OPV)。最终的平衡压印特征轮廓在很大程度上取决于压印温度。最高的特征纵横比(或对比度)出现在特定的压印温度窗口(80-90°C)。 X射线衍射表明,在这样的温度窗口下的纳米压印可以诱导高度的分子堆叠,从而有助于稳定压印的特征。在此窗口之外,我们观察到模板移除后压印特征的明显松弛,这归因于表面扩散。模拟了影响印记特征最终平衡轮廓的关键因素。从模拟中发现,结晶诱导的表面能各向异性稳定了压印特征。诸如稳定的特征纵横比和间距之类的模拟参数与实验数据吻合得很好。这项工作为优化小分子量有机化合物的纳米构图提供了重要指导。

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