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Photoconductivity in Metal-Organic Framework (MOF) Thin Films

机译:金属有机框架(MOF)薄膜的光电导

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摘要

Photoconductivity is a characteristic property of semi-conductors. Herein, we present a photo-conducting crystalline metal-organic framework (MOF) thin film with an on-off photocurrent ratio of two orders of magnitude. These oriented, surface-mounted MOF thin films (SURMOFs), contain porphyrin in the framework backbone and C-60 guests, loaded in the pores using a layer-by-layer process. By comparison with results obtained for reference MOF structures and based on DFT calculations, we conclude that donor-acceptor interactions between the porphyrin of the host MOF and the C-60 guests give rise to a rapid charge separation. Subsequently, holes and electrons are transported through separate channels formed by porphyrin and by C-60, respectively. The ability to tune the properties and energy levels of the porphyrin and fullerene, along with the controlled organization of donor-acceptor pairs in this regular framework offers potential to increase the photoconduction on-off ratio.
机译:光电导性是半导体的特征性。 在此,我们介绍了一种光导晶金属 - 有机框架(MOF)薄膜,其随后的光电流比为两个数量级。 这些导向的表面上安装的MOF薄膜(SURMOFS)含有框架骨架中的卟啉和C-60位客人,使用层逐层加工在孔中。 通过比较参考MOF结构的结果并基于DFT计算,我们得出结论,主机MOF的卟啉与C-60客人之间的供体受体相互作用产生了快速的电荷分离。 随后,分别通过卟啉和C-60形成的单独通道输送孔和电子。 调整卟啉和富勒烯的性质和能量水平的能力以及该常规框架中的供体受体对的受控组织提供了增加光电通电比率的可能性。

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