首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Confirmation of the Origins of Panchromatic Spectra in Squaraine Thin Films Targeted for Organic Photovoltaic Devices
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Confirmation of the Origins of Panchromatic Spectra in Squaraine Thin Films Targeted for Organic Photovoltaic Devices

机译:靶向有机光伏器件的鳞型薄膜中的全色谱的起源

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Squaraines offer significant potential for organic photovoltaics because of their broad absorbance and high extinction coefficients as well as their expected use as mechanistic probes in such devices. In this work steps are taken to develop a comprehensive understanding of the excited-state properties of squaraines on the basis of their molecular structure and the resulting solid-state packing. Accurate assignments of the absorption spectral peaks are made on the basis of an essential states model, expanded to include intermolecular charge transfer (ICT). A comparison of simulated spectra with spectra for two symmetric squaraine derivatives confirms that ICT has a major influence on the optical and electronic properties of squaraine aggregates, fully accounting for the origin of the strong panchromaticity of these systems.
机译:由于它们的宽吸光度和高消光系数以及它们在这种装置中的机械探针中,Squaraines提供了有机光伏的显着潜力。 在这项工作中,采取措施在其分子结构和所用固态包装的基础上制定对Squaraines兴奋状态性质的全面理解。 吸收光谱峰的准确分配是基于基本态模型进行的,扩展到包括分子间电荷转移(ICT)。 两种对称鳞状衍生物光谱的模拟光谱的比较证实了ICT对Squaraine骨料的光学和电子性质具有重要影响,完全占这些系统的强烈平整性的起源。

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