首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A new class of epitaxial porphyrin metal-organic framework thin films with extremely high photocarrier generation efficiency: promising materials for all-solid-state solar cells
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A new class of epitaxial porphyrin metal-organic framework thin films with extremely high photocarrier generation efficiency: promising materials for all-solid-state solar cells

机译:具有极高的光载流子产生效率的新型外延卟啉金属有机骨架薄膜:用于全固态太阳能电池的有前途的材料

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摘要

We demonstrate the fabrication of a new class of epitaxial porphyrin metal-organic framework thin films whose photophysical properties can be tuned by the introduction of electron-donating diphenylamine (DPA) groups into the porphyrin skeleton. The attachment of DPA groups results in strongly improved absorption characteristics, yielding the highest photocarrier generation efficiency reported so far. DFT calculations identify a shift of the charge localization pattern in the VBM (lowest unoccupied molecular orbital), confirming that the introduction of the DPA groups is the main reason for the shift of the optical absorption spectrum and the improved photocurrent generation.
机译:我们演示了新型外延卟啉金属有机骨架薄膜的制造,该薄膜的光物理性质可以通过在卟啉骨架中引入给电子二苯胺(DPA)基团来调节。 DPA基团的连接可显着改善吸收特性,从而产生迄今为止报道的最高的光载流子产生效率。 DFT计算确定了VBM(最低未占据分子轨道)中电荷定位模式的偏移,这证实了DPA基团的引入是光吸收光谱偏移和光电流产生改善的主要原因。

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