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Effect of hydrogen adsorption on the electronic and optical properties of the Mg-doped O-terminated ZnO surface

机译:氢吸附对掺M的O端ZnO表面电子和光学性质的影响

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The effect of hydrogen adsorption on the electronic structures and optical properties of undoped and Mg-doped ZnO (0001) polar surface was investigated using the first principles method. The obtained results show that hydrogen adsorption is more favored on Mg doped-ZnO (0001) surface than onto the clean surface, and this makes Mg-doped ZnO and Mg_xZn_(1-x)O more efficient for H storage or gas sensing applications than undoped ZnO. On the other hand, our results show that the hydrogen adsorption on the Mg doped surface is energetically very preferable when the surface was prepared under O-rich conditions. We have also examined the effect of H adsorption on the optical properties of the surface.
机译:使用第一原理方法研究了氢吸附对未掺杂和掺杂Mg的ZnO(0001)极性表面的电子结构和光学性能的影响。所得结果表明,在Mg掺杂的ZnO(0001)表面比在干净的表面上更有利于氢吸附,这使得Mg掺杂的ZnO和Mg_xZn_(1-x)O的储氢或气体传感应用效率更高。未掺杂的ZnO。另一方面,我们的结果表明,当在富含O的条件下制备Mg掺杂表面时,在能量上非常优选氢吸附。我们还检查了H吸附对表面光学性能的影响。

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