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An optimization approach to identify processing pathways for achieving tailored thin film morphologies

机译:鉴定达到量身定制薄膜形态的处理途径的优化方法

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摘要

It is well-known that the performance of thin film organic electronic devices critically depends on the active layer microstructure. Since processing conditions heavily influence the microstructure, identifying optimal fabrication conditions is a crucial step towards the development of high-performance devices. Current state-of-the-art approaches remain predominantly trial-and-error, which are time and resource intensive. In this work, we integrate a morphology evolution framework (based on a phase-field model) with a heuristic optimization scheme to systematically identify promising processing conditions. We show how annealing time and substrate patterning can be simultaneously tuned to achieve a variety of tailored microstructures. The appropriate choice of cost functional is critical to achieving meaningful results. The methodology presented here provides a scalable and extensible approach towards the rational design of tailored microstructures with enhanced functionalities. (C) 2017 Elsevier B.V. All rights reserved.
机译:众所周知,薄膜有机电子器件的性能批判性地取决于有源层微观结构。由于加工条件严重影响微观结构,因此识别最佳的制造条件是朝向高性能设备发展的关键步骤。目前最先进的方法仍然主要是试验和错误,这是时间和资源密集。在这项工作中,我们将形态演化框架(基于阶段模型)集成,以启发式优化方案来系统地识别有前途的处理条件。我们展示了如何进行退火时间和基板图案,可以同时调整以实现各种量身定制的微观结构。 The appropriate choice of cost functional is critical to achieving meaningful results.这里提出的方法提供了具有增强功能的定制微结构的合理设计的可扩展和可伸缩的方法。 (c)2017 Elsevier B.v.保留所有权利。

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