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3d transition metal coordination on monolayer MoS2: a facile doping method to functionalize surfaces

机译:3 d单层过渡金属协调二硫化钼:灵巧的掺杂方法使职能化表面

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摘要

Two-dimensional materials (2DM) have attracted much interest due to their distinct optical, electronic, and catalytic properties. These properties can be tuned by a range of methods including substitutional doping and, as recently demonstrated, by surface functionalization with single atoms, thus increasing the 2DM portfolio. We theoretically and experimentally describe the coordination reaction between MoS2 monolayers and 3d transition metals (TMs), exploring their nature and MoS2-TM interactions. Density functional theory calculations, X-ray photoelectron spectroscopy (XPS), and photoluminescence (PL) spectroscopy point to the formation of MoS2-TM coordination complexes, where the adsorption energy for 3d TMs resembles the crystal-field (CF) stabilization energy for weak-field complexes. Pearson's theory for hard-soft acid-base and ligand-field theory were used to discuss the periodic trends of 3d TM coordination on MoS2 monolayer surfaces. We found that softer acids with higher ligand field stabilization energy, such as Ni2+, tend to form bonds with more covalent character with MoS2, which can be considered a soft base. On the other hand, harder acids, such as Cr3+, tend to form more ionic bonds. Additionally, we studied the trends in charge transfer and doping observed from XPS and PL results, where metals like Ni led to n-type doping. In contrast, Cu functionalization results in p-type doping. Therefore, the formation of coordination complexes on TMD's surface is a potentially effective way to control and understand the nature of single-atom functionalization of TMD monolayers without relying on or creating new defects.
机译:二维材料(2 dm)吸引了多利益因其独特的光学、电子和催化特性。属性可以通过一系列的调整方法包括置换掺杂,最近证明,通过表面功能化单个原子,从而增加2 dm组合。我们从理论上和实验描述在单层二硫化钼和协调反应三维过渡金属(TMs),探索他们的自然和MoS2-TM交互。泛函理论计算,x射线光电子能谱(XPS)和光致发光(PL)光谱指向MoS2-TM协调复合物的形成,三维经颅磁刺激的吸附能像在哪里晶体场(CF)稳定的能量弱场复合物。软硬酸碱和配位场理论用来讨论3 d TM的周期性规律协调二硫化钼单层表面。软酸与更高的配位场稳定的能源,比如Ni2 +,倾向于形式债券更共价的字符与二硫化钼、可以被视为一个软基地。手,更酸,三价铬,比如倾向于形式更多的离子键。电荷转移和掺杂的趋势XPS和PL结果,镍等金属n型掺杂。在p型掺杂功能化结果。因此,协调的形成配合物在TMD是一种潜在的表面有效的方法来控制和理解单原子共价功能化的TMD的性质单层膜不依赖或创造新的缺陷。

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