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Absorption Spectra for Disordered Aggregates of Chromophores Using the Exciton Model

机译:使用激子模型的发作混合物聚集体的吸收光谱

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摘要

Optimizing the optical properties of large chromophore aggregates and molecular solids for applications in photovoltaics and nonlinear optics is an outstanding challenge. It requires efficient and reliable computational models that must be validated against accurate theoretical Methods. We show that linear absorption spectra calculated using the molecular exciton model agree well with spectra calculated using time-dependent density functional theory and configuration interaction singles for aggregates of strongly polar chromophores. Similar agreement is obtained for a hybrid functional (B3LYP), a long-range corrected hybrid functional (omega B97X), and configuration interaction singles. Accounting for the electrostatic environment of individual chromophores in the parametrization of the exciton model with the inclusion of atomic point charges significantly improves the agreement of the resulting spectra with those calculated using all-electron methods; different charge definitions, (Mulliken and ChelpG) yield similar results. We find that there is a size-dependent error in the exciton model compared with all-electron methods, but for aggregates with. more than six chromophores, the errors change slowly with the number of chromophores in the aggregate. Our results validate the use of the molecular exciton model for predicting the absorption spectra of bulk molecular solids; its formalism also allows straightforward extension to calculations of nonlinear optical response.
机译:优化大型发色团聚集体的光学性质和用于光伏和非线性光学应用的应用的分子固体是一个突出的挑战。它需要必须验证有效且可靠的计算模型,以防止准确的理论方法。我们表明使用分子激子模型计算的线性吸收光谱与使用时间依赖性密度官能理论和配置相互作用单打的光谱相同,用于强极性发色团的聚集体。对于混合功能(B3LYP),远程校正的混合官能(OMEGA B97X)和配置相互作用单打,获得了类似的协议。在激发器模型中包含原子点电荷的静脉化环境中的个体发色团的静电环境显着提高了所得光谱的协议,与使用全电子方法计算的那些;不同的电荷定义,(mulliken和chelpg)产生类似的结果。我们发现激子模型中有一个依赖于依赖的错误,而与全电子方法相比,但是对于聚集体。超过六个发色团,误差缓慢变化,骨料中的发色团数量缓慢。我们的结果验证了分子激子模型用于预测散装分子固体的吸收光谱;其形式主义还允许直接扩展来计算非线性光学响应。

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