Simulation of Nanostructured Materials for Solar Energy Conversion

Y. Kanai, J. Neaton, J. Grossman
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Abstract

In the last half of the 20th century, computation has become an indispensible tool in science. Enormous progress in high-performance computational capabilities allow us to solve highly complex mathematical equations with ever-increasing accuracy, providing detailed scientific understanding. The role of quantum-mechanical electronic structure calculations in advancing nano-technology is greatly expanding in recent years, and such computational research has started to play an important role not only in understanding but also for designing new functional materials. In this article, we highlight how such computational methods are being employed for improving upon existing and predicting novel nano-materials for photovoltaic applications.
太阳能转换纳米材料的模拟研究
在20世纪后半叶,计算已经成为科学研究中不可或缺的工具。高性能计算能力的巨大进步使我们能够以不断提高的精度解决高度复杂的数学方程,提供详细的科学理解。近年来,量子力学电子结构计算在推进纳米技术方面的作用大大扩大,这种计算研究不仅开始在理解和设计新的功能材料方面发挥重要作用。在这篇文章中,我们强调了如何利用这些计算方法来改进现有的和预测光伏应用的新型纳米材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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