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分子材料的激子模型:过去、现在与未来?

The Exciton Model for Molecular Materials: Past, Present and Future?

作者信息

Meskers Stefan C J

机构信息

Molecular Materials and Nanosystems Institute for Complex Molecular Systems, Department of Chemical Engineering and Chemistry, Eindhoven university of Technology, 5600 MB, Eindhoven, The Netherlands.

出版信息

Chemphyschem. 2023 Dec 14;24(24):e202300666. doi: 10.1002/cphc.202300666. Epub 2023 Nov 27.

Abstract

In assemblies of identical molecules or chromophores, electronic excitations can be described as excitons, bound electron-hole pairs that can move from site to site as a pair in a coherent manner. The understanding of excitons is crucial when trying to engineer favorable photophysical properties through structuring organic molecular matter. In recent decades, limitations of the concept of an exciton have become clear. The exciton can hybridize with phonon and photons. To clarify these issues, the exciton is discussed within the broader context of the gauge properties of the electromagnetic force.

摘要

在相同分子或发色团的集合中,电子激发可以被描述为激子,即束缚的电子 - 空穴对,它们能够以相干的方式作为一个整体从一个位点移动到另一个位点。当试图通过构建有机分子物质来设计有利的光物理性质时,对激子的理解至关重要。在最近几十年中,激子概念的局限性已经变得明显。激子可以与声子和光子发生杂化。为了阐明这些问题,将在电磁力规范性质的更广泛背景下讨论激子。

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