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本帖最后由 小范范1989 于 2019-5-29 10:13 编辑
背景:通过Marcus方程计算S1-T1的系间窜越速率(ISC)
如下图
Obviously, this term is hugely determined by the parameters EST and λ, and highly controls the ISC rate constant. In a rigid environment, the displacement between the concerning electronic states is usually small, leading to the weak coupling limit (EST>>λ).
Consequently, increasing λ and lowering the EST become alternative ways to accelerate the ISC process. Instead, this relationship is invalid if the two states of ISC have a large structural change.
问题:
根据公式,不应该是重组能越小,这个ISC速率越大吗?而且之前有文章说了这个问题了:“Suppression of Structural Change upon S1–T1 Conversion Assists the Thermally Activated Delayed Fluorescence Process in Carbazole-Benzonitrile Derivatives”
里面说:We emphasize that a strategy to control the inherent geometrical distortion between S1 and T1 electronically and/or sterically by molecular design is important for controlling RISC processes.
当然这个文章说的是RISC。但是计算公式也是Marcus。
为啥现在是重组能大,ISC大呢?难道是他文章中说的这个原因?“In a rigid environment, the displacement between the concerning electronic states is usually small, leading to the weak coupling limit (EST>>λ)”没太理解这是什么意思。
谢谢老师指点。
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Marcus.png
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