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Modeling organic electronic materials: bridging length and time scales

机译:建模有机电子材料:桥接长度和时间尺度

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摘要

Organic electronics is a popular and rapidly growing field of research. The optical, electrical and mechanical properties of organic molecules and materials can be tailored using increasingly well controlled synthetic methods. The challenge and fascination with this field of research is derived from the fact that not only the chemical identity, but also the spatial arrangement of the molecules critically affects the performance of the material. Thus synthetic, fabrication, characterisation and computational scientists need to work closely to relate a materials performance in a device to the molecular details that cause and optimise that performance. For computational scientists in particular, the need to relate macroscopic device performance to details of molecular electronic structure brings challenges in methodology due to the need to bridge many orders of time and length scales. This article provides a survey of computational methods applied to multiple-length and time scale problems in organic electronic materials. Here we seek to highlight a few particular approaches that expand the simulation toolbox.
机译:有机电子产品是一种流行迅速增长的研究领域。有机分子和材料的光学,电气和机械性能可以使用越来越良好的控制合成方法来定制。与这一研究领域的挑战和迷恋是从化学身份的事实中得出的,而且分子的空间排列统治性地影响了材料的性能。因此,合成,制造,表征和计算科学家需要密切地与设备中的材料性能相关联,以使分子细节引起并优化这种性能。对于尤其是计算科学家,需要将宏观设备性能与分子电子结构的细节相关联,这是由于需要桥接许多时间和长度尺度的方法所带来的方法。本文提供了应用于有机电子材料中多长度和时间尺度问题的计算方法的调查。在这里,我们寻求突出显示展开仿真工具箱的一些特定方法。

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