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首页> 外文期刊>Physica, B. Condensed Matter >The alkali and alkaline earth metal doped ZnO nanotubes: DFT studies
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The alkali and alkaline earth metal doped ZnO nanotubes: DFT studies

机译:碱金属和碱土金属掺杂的ZnO纳米管:DFT研究

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Doping of several alkali and alkaline earth metals into sidewall of an armchair ZnO nanotube has been investigated by employing the density functional theory in terms of energetic, geometric, and electronic properties. It has been found that doping processes of the alkali and alkaline metals are endothermic and exothermic, respectively. Based on the results, contrary to the alkaline metal doping, the electronic properties of the tube are much more sensitive to alkali metal doping so that it is transformed from intrinsic semiconductor with HOMO-LUMO energy gap of 3.77 eV to an extrinsic semiconductor with the energy gap of ~1.11-1.95 eV. The doping of alkali and alkaline metals increases and decreases the work function of the tube, respectively, which may influence the electron emission from the tube surface.
机译:已经通过利用密度泛函理论从能量,几何和电子特性方面研究了几种碱金属和碱土金属向扶手椅状ZnO纳米管侧壁的掺杂。已经发现,碱金属和碱金属的掺杂过程分别是吸热的和放热的。根据结果​​,与碱金属掺杂相反,该管的电子特性对碱金属掺杂更加敏感,因此它从具有3.77 eV HOMO-LUMO能隙的本征半导体转变为具有该能的非本征半导体。差距约为1.11-1.95 eV。碱金属和碱金属的掺杂分别增加和降低了管的功函,这可能会影响从管表面发射的电子。

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