广东第二师范学院学报
廣東第二師範學院學報
엄동제이사범학원학보
Journal of Guangdong Education Institute
2013年
5期
51~57
,共null页
界面 电子传输 相互作用 第一性原理
界麵 電子傳輸 相互作用 第一性原理
계면 전자전수 상호작용 제일성원리
interfaces; election transport ; interaetions ; first-principles
采用基于密度泛函理论的第一性原理平面波赝势方法研究了Au/SrTiO3(001)/Au异质结界面Y、Zr、Nb和Mo元素置换掺杂与电子传输相互作用的微观机制.通过分析各通道原子的电荷差分密度以及投影态密度,发现Au/SrTiO3(001)/Au中导电通道的开关状态对于不同界面掺杂金属元素差异明显.当Y和Zr分别置换界面层Ti(1)原子时,尽管界面电子态有局域化现象,但并没有改变理想界面模型导电通道的关闭状态;当Nb、Mo分别置换界面层Ti(1)原子时,电子掺杂效应使原来理想界面模型的导电通道从关闭状态转变为开放状态,从而提高了异质结界面体系的导电性能.
採用基于密度汎函理論的第一性原理平麵波贗勢方法研究瞭Au/SrTiO3(001)/Au異質結界麵Y、Zr、Nb和Mo元素置換摻雜與電子傳輸相互作用的微觀機製.通過分析各通道原子的電荷差分密度以及投影態密度,髮現Au/SrTiO3(001)/Au中導電通道的開關狀態對于不同界麵摻雜金屬元素差異明顯.噹Y和Zr分彆置換界麵層Ti(1)原子時,儘管界麵電子態有跼域化現象,但併沒有改變理想界麵模型導電通道的關閉狀態;噹Nb、Mo分彆置換界麵層Ti(1)原子時,電子摻雜效應使原來理想界麵模型的導電通道從關閉狀態轉變為開放狀態,從而提高瞭異質結界麵體繫的導電性能.
채용기우밀도범함이론적제일성원리평면파안세방법연구료Au/SrTiO3(001)/Au이질결계면Y、Zr、Nb화Mo원소치환참잡여전자전수상호작용적미관궤제.통과분석각통도원자적전하차분밀도이급투영태밀도,발현Au/SrTiO3(001)/Au중도전통도적개관상태대우불동계면참잡금속원소차이명현.당Y화Zr분별치환계면층Ti(1)원자시,진관계면전자태유국역화현상,단병몰유개변이상계면모형도전통도적관폐상태;당Nb、Mo분별치환계면층Ti(1)원자시,전자참잡효응사원래이상계면모형적도전통도종관폐상태전변위개방상태,종이제고료이질결계면체계적도전성능.
The microscopic mechanism of the interactions between substitution doping of metal elements (Y, Zr, Nb, Mo) and electronic transport on the interfaces of Au/SrTiOa (001)/Au hetero- structures are investigated by using the first-principles PWPP calculations based on the density functional theory. From the analysis of charged difference density and the projected density of states of the channel atoms, it is revealed that the switch state of conductance channel in Au/SrTiO3 (001)/Au is very different with various substitution doping of metal elements. When Nb (Mo) substitutes the interfacial Ti(1), the intrinsically closed conductance channel in Au/SrTiOa (001)/Au turns out to be open due to such electron doping as Nb and Mo which would enhance its electrical conductivity, while doping effects of other metal elements (Y and Zr) can not change the closed conductance channel even resulting in the local electron states at interface.