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Size-dependent electron transfer from atomically defined nanographenes to metal oxide nanoparticles

机译:从自动尺度依赖的电子转移定义nanographenes金属氧化物纳米粒子

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摘要

Atomically defined nanographenes (NGs) feature size-dependent energy gaps induced by, and tuneable through, quantum confinement. Their energy-tunability and robustness make NGs appealing candidates as active elements in sensitized geometries, where NGs functionalize a metal oxide (MO) film with large-area-to-volume ratio. Despite the prominent relevance of NG/MO interfaces for developing novel architectures for solar energy conversion, to date, little information is available regarding the fundamentals of electron transfer (ET) processes taking place from NG donors to MO acceptors. Here, we analyze the interplay between the size of atomically precise NGs and ET dynamics at NG/MO interfaces. We observe that as the size of NG decreases, ET from the NG donating state to the MO acceptor state speeds up. This dependence can be rationalized from variations in the donor-to-acceptor interfacial overpotential as the NG size (HOMO-LUMO gap) is reduced (increased), and can be rationalized within the framework of Marcus ET theory.
机译:自动定义nanographenes(上天)特性尺度依赖的能源缺口引起的可协调的,量子约束。energy-tunability和健壮性使门店有吸引力的候选人是活跃的元素敏化的几何图形,总会使职能化金属氧化物与large-area-to-volume (MO)电影比率。接口开发的新架构太阳能能量转换,到目前为止,小有关的信息是可用的基础电子转移(ET)的过程从NG捐助者莫受体发生。在这里,我们分析大小之间的相互作用自动准确的门店和ET动力学NG / MO接口。NG减少,从NG捐赠状态等莫受体状态加速。可以从变化合理吗donor-to-acceptor界面超电势,NG大小(HOMO-LUMO gap)会降低(增加),可以内部的合理化马库斯等理论的框架。

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