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MULTI-SCALE SIMULATIONS OF FUNCTIONAL MATERIALS

机译:功能材料的多尺度模拟

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Here I am going to report our recent research progress on the simulations of different functional materials by combining multi-scale simulation methods. By combining atomistic simulation and meso-scale simulations, we are able to predict the morphology of the active layer of polymer solar cell, which is critical for its performance. Our approach successfully predicts the parameters influencing the morphology, including the composition ratio, temperature, and the parameters not available from experiments, such as the Flory-Huggins parameters, etc. The new method provides a useful filter for designing new high efficient and stable BHJ polymer solar cells. We collaborate with experimental groups and successfully obtain high performance OPV devices.
机译:在这里,我将通过组合多尺度仿真方法来报告我们最近的不同功能材料的研究进展。通过组合原子仿真和中学尺度模拟,我们能够预测聚合物太阳能电池有源层的形态,这对于其性能至关重要。我们的方法成功地预测了影响形态,包括组成比,温度和无法从实验中获得的参数的参数,例如福伦 - Huggins参数等。新方法为设计新的高效和稳定的BHJ提供了有用的滤波器聚合物太阳能电池。我们与实验组合作,并成功获得高性能OPV设备。

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