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Functional Group Effects on the Photoelectronic Properties of MXene (Sc2CT2 T = O F OH) and Their Possible Photocatalytic Activities

机译:官能团对MXene(Sc2CT2T = OFOH)的光电特性的影响及其可能的光催化活性

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摘要

In view of the diverse functional groups left on the MXene during the etching process, we computationally investigated the effects of surface-group types on the structural, electronic and optical properties of Sc2CT2 (T = -O, -OH, -F) MXenes. For all geometries of the Sc2CT2 MXenes, the geometry I of Sc2CT2, which has the functional groups locating above the opposite-side Sc atoms, are lowest-energy structure. Accordingly, the energetically favorable Sc2CF2-I, Sc2CO2-I and Sc2C(OH)2-I were selected for further evaluation of the photocatalytic activities. We found that the Sc2CO2-I is metallic, while Sc2CF2-I and Sc2C(OH)2 are semiconductors with visible-light absorptions and promising carrier mobilities. Compared with the Sc2C(OH)2-I, the Sc2CF2-I has not only more suitable band gap (1.91 eV), but also the higher redox capability of photo-activated carriers, which should have better photocatalytic performance.
机译:鉴于在蚀刻过程中MXene上残留有各种官能团,我们通过计算研究了表面基团类型对Sc2CT2(T = O-O,-OH,-F)MXenes的结构,电子和光学性质的影响。对于Sc2CT2 MXene的所有几何形状,具有位于相对侧Sc原子上方的官能团的Sc2CT2几何形状I是能量最低的结构。因此,选择能量上有利的Sc2CF2-I,Sc2CO2-I和Sc2C(OH)2-I以进一步评估光催化活性。我们发现Sc2CO2-I是金属的,而Sc2CF2-I和Sc 2 C(OH) 2 是具有可见光吸收和有希望的载流子迁移率的半导体。与Sc 2 C(OH) 2 -I相比,Sc 2 CF 2 -I没有它不仅具有更合适的带隙(1.91 eV),而且具有较高的光活化载流子的氧化还原能力,应具有更好的光催化性能。

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