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A curve-crossing model to rationalize and optimize diarylethene dyads

机译:优化和优化二芳基乙烯二元的曲线交叉模型

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摘要

Going from photochromic compounds presenting a single switchable function to multi-addressable photochromic multimers remains an extremely difficult task notably because the interactions of several photochromic units through a linker generally result in a substantial loss of photoactivity. Due to their size and the intrinsic complexity of their electronic structure, coupled photochromes also constitute a fundamental challenge for theoretical chemistry. We present here an effective curve-crossing model that, used in connection with easily accessible ab initio data, allows a first understanding of the difficulty to obtain efficient multiphotochromes. Indeed, we demonstrate that extra crossing points, specific to multiphotochromes, have to be passed to ensure reactivity. In addition, the proposed approach allows the definition of an intuitive tilt criterion that can be used to screen a large number of substitution patterns and hence help in the design of new compounds, an aspect that is also developed here. The compatibility of this tilt criterion with previously proposed static Franck–Condon parameters is discussed as well.
机译:从表现出单一可切换功能的光致变色化合物转变为可多寻址的光致变色多聚体仍然是极其困难的任务,特别是因为通过连接子的多个光致变色单元的相互作用通常导致光活性的显着损失。由于其尺寸和电子结构的内在复杂性,耦合的光致变色材料也构成了理论化学的基本挑战。我们在这里提出了一个有效的曲线交叉模型,该模型与容易获得的从头算数据结合使用,可以使您对获得有效的多光致变色材料的难度有一个初步的了解。实际上,我们证明必须通过特定于多光致变色材料的额外交叉点来确保反应活性。另外,所提出的方法允许定义直观的倾斜标准,该标准可用于筛选大量的取代模式,因此有助于设计新化合物,这也是本文开发的一个方面。还讨论了该倾斜标准与先前提出的静态Franck-Condon参数的兼容性。

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