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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular-Orientation-Dependent Interfacial Charge Transfer in Phthalocyanine/MoS2 Mixed-Dimensional Heterojunctions
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Molecular-Orientation-Dependent Interfacial Charge Transfer in Phthalocyanine/MoS2 Mixed-Dimensional Heterojunctions

机译:邻酞菁/ MOS2混合型异质结的分子取向依赖性界面电荷转移

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Mixed-dimensional heterojunctions (MDHJs) combine the characteristics of component materials such as the discrete orbital energies of zero-dimensional (0D) molecules and the extended band structure of two-dimensional (2D) semiconductors. Here, time-resolved spectroscopy reveals sub-picosecond photoinduced hole-transfer and sub-320 fs photoinduced electron-transfer processes at the interfaces of type-II copper and free-base phthalocyanine/monolayer MoS2 MDHJs. In CuPc/MoS2 heterojunctions, charge separation lasts as long as 70 ns, which is a factor of 17 longer than that in H2Pc/MoS2 heterojunctions and a factor of 40 longer than that in previously reported transition-metal dichalcogenide-based heterojunctions. Preservation of the charge-separated state is attributed to the face-on orientation of CuPc on the MoS2 surface, which templates stacking of CuPc molecules and facilitates hole migration away from the interface, whereas H2Pc molecules adopt a mixed edge-on and face-on orientation. This work highlights the role of molecular structure in determining the interfacial geometry and, ultimately, charge-transfer dynamics in 0D/2D heterojunctions.
机译:混合尺寸异质局(MDHJS)结合了组分材料的特性,例如零维(0d)分子的离散轨道能量和二维(2D)半导体的延伸带结构。这里,时间分辨光谱透露型亚皮秒光照空穴 - 转移和Sub-320 FS在II型铜和游离碱酞菁/单层MOS2 MDHJ的界面处的光突出电子转移方法。在Cupc / MOS2异质结中,电荷分离持续只要70ns,这比H2PC / MOS2杂交杂交的长度为17倍,并且比以前报道的过渡金属二甲硅烷基异质结长度长。电荷分离状态的保存归因于MOS2表面上的CUPC的面对方向,模板堆叠CUPC分子并促进远离界面的孔迁移,而H2PC分子采用混合的边缘和面部方向。这项工作突出了分子结构在确定界面几何形状中的作用,最终是0D / 2D异质结的电荷转移动态。

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