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1.
本文采用第一性原理方法研究了Nb-X(X=Y,Zr)共掺杂SnO_2能带结构与态密度,探讨了其磁性产生的机理.研究结果表明,Nb-Y共掺杂SnO_2体系自旋向上和自旋向下的能带、态密度完全对称,总磁矩为0μB;Nb-Zr共掺杂的SnO_2体系自旋向上和自旋向下的能带与态密度在费米能级处都出现了不对称的情况,出现耦合现象,其总磁矩为0.933μB;分析Nb-Y共掺杂SnO_2的能带结构与态密度得到自旋向上和自旋向下的能带禁带中的4条杂质能级来源于Nb-Y共掺杂SnO_2电子的施主与受主能级;NbZr共掺杂SnO_2体系产生磁性的原因在于Nb和Zr的d轨道的引入.  相似文献   

2.
本文利用第一性原理研究了C-Nb共掺杂的SnO_2稳定性、能带结构与态密度,从自旋向上和自旋向下的能带结构以及态密度分析了掺杂体系磁性产生的机理.研究结果表明,C-Nb共掺杂SnO_2体系的稳定性强于C,Nb单掺杂SnO_2体系;C,Nb单掺杂、C-Nb共掺杂的SnO_2体系的总磁矩分别为0μB、0.922μB、1.0μB;Nb掺杂SnO_2体系产生磁性在于Nb的d轨道引入,C-Nb共掺杂SnO_2体系产生磁性在于Nb的s轨道和C的p轨道相互作用.  相似文献   

3.
本文基于第一性原理方法研究了Y,Zr,Nb在Sn位掺杂SnO_2的键长变化、稳定性、能带结构以及态密度.结果表明:Y,Zr,Nb在Sn位掺杂SnO_2使附近的键长发生改变,改变量最大是Y掺杂SnO_2体系;掺杂体系的杂质替换能都为负值,表明体系为稳定结构;掺杂使SnO_2能级增多,能较好的调节带隙值;而Y掺杂SnO_2体系价带顶端有一条能级越过了费米线表明该体系呈现出半导体的特征;同时,Y,Zr,Nb掺杂SnO_2使导带底端的能级出现分离;在低能区的态密度仍主要由Sn、O的s轨道贡献;在高能区态密度的掺杂体系出现sp杂化的现象; Zr掺杂SnO_2的态密度能量向低能区移动.  相似文献   

4.
采用基于密度泛函理论(DFT)的第一性原理中的平面波超软赝势(PWPP)方法对理想TiO_2,N单掺杂,Pt单掺杂和Pt-N共掺杂锐钛矿相TiO_2的电子结构进行计算,分析N单掺杂、Pt单掺杂及Pt-N共掺杂对锐钛矿相TiO_2的晶体结构、能带和态密度的影响.计算结果表明:掺杂后TiO_2的晶格发生畸变,原子间键长的变化使晶格发生膨胀,Pt单掺杂、N单掺杂TiO_2禁带宽度变窄,Pt-N共掺杂TiO_2分别在价带顶和导带底产生杂质能级,且禁带宽度缩小范围大,表明Pt-N共掺杂能进一步提高锐钛矿TiO_2催化性能.  相似文献   

5.
采用基于密度泛函理论的第一性原理计算方法,构建了Sm、Sb及Sm和Sb共掺杂SnO2超晶胞模型,研究了经过几何优化后的各掺杂体系的焓变值、能带结构、态密度、电荷布居、介电常数、吸收系数、反射率等光电性质.结果表明:Sm和Sb的掺杂可以有效地提升SnO2的导电性能,且Sb和Sm共掺杂体系的电学性能最佳. Sm和Sb掺杂还可以增加SnO2在红外波段的电子极化能力和电子跃迁概率,提升了红外反射率,且共掺杂体系的电子束缚能力最强、反射率最高.这为SnO2基光电材料的研制提供了一定的理论依据.  相似文献   

6.
本文采用第一性原理研究了Mn、N掺杂TiO_2和Mn-N共掺杂TiO_2的能带结构、态密度和Mn-N共掺TiO_2对体系介电函数与吸收谱的影响.研究结果表明,Mn掺杂TiO_2的能带结构的禁带内出现的杂质能级是由Mn的3d轨道贡献;N掺杂TiO_2在费米能级处的杂质能级则由O 2p,Ti 3d和N 2p轨道杂化形成;Mn-N共掺的TiO_2能带在费米能级处的杂质能级则由O 2p,Ti和Mn的3d以及N 2p轨道杂化形成;对于介电函数,在低能区间(2.5 e V),理想TiO_2无介电峰,Mn-N共掺体系则出现了两个介电峰,原因在于Mn 3d态和N 2p态使介电峰值向低能区移动;同时,与理想TiO_2的吸收谱相比,最大的变化是在可见光区出现了一个吸收峰,且在可见光区的响应的范围变宽.  相似文献   

7.
本文采用第一性原理研究了Mn、N掺杂TiO2和Mn-N共掺杂TiO2的能带结构、态密度和Mn-N共掺TiO2对体系介电函数与吸收谱的影响.研究结果表明,Mn掺杂TiO2的能带结构的禁带内出现的杂质能级是由Mn 的3d轨道贡献;N掺杂TiO2在费米能级处的杂质能级则由O 2p, Ti 3d和N 2p轨道杂化形成;Mn-N共掺的TiO2能带在费米能级处的杂质能级则由O 2p, Ti 和Mn的3d以及N 2p轨道杂化形成; 对于介电函数,在低能区间(<2.5 eV),理想TiO2无介电峰, Mn-N共掺体系则出现了两个介电峰,原因在于Mn 3d态和N 2p态使介电峰值向低能区移动;同时,与理想TiO2的吸收谱相比,最大的变化是在可见光区出现了一个吸收峰,且在可见光区的响应的范围变宽.  相似文献   

8.
运用密度泛函平面波赝势(PWP)和广义梯度近似(GGA)方法,对二氧化钒(VO2)两种不同晶体电子结构进行了计算.研究了低温单斜晶型和高温四方晶型结构的VO2电子态密度(DOS)和能带(energyband)结构,通过分析发现,四方晶的金属性比较明显,这是由于电子态密度和能带结构分析结果表明不同特性产生的原因是V原子的3d电子贡献不同导致的.本文中我们还将部分O原子替换为F原子后对单斜晶替位掺杂进行了的计算讨论,本文的计算结果都较好地符合实验结果,表明密度泛函平面波赝势和广义梯度近似方法可以用来描述VO2的结构和性质.我们认为,这种方法应用于描述氧化物的电子结构和性质是一种新的探索.  相似文献   

9.
F掺杂SnO2电子结构的模拟计算   总被引:4,自引:0,他引:4       下载免费PDF全文
采用基于密度泛函理论的平面波赝势方法对SnO2:F体系的电子结构进行了第一性原理模拟计算.用广义梯度近似方法优化SnO2:F体系的晶胞结构,计算了体系基态总能.通过确定F掺杂对O的优先替代位置,计算了SnO2:F的能带结构、态密度、分波态密度.分析了F掺杂对SnO2晶体的电子结构和晶体性质及光学吸收边的影响,从理论上得出光学吸收边发生蓝移.对不同掺杂量的体系电子结构进行了分析.  相似文献   

10.
采用第一性原理方法,对Sc掺杂SnO2以及含有O空位的Sc掺杂SnO2的电子结构和磁学性质进行了计算。结果表明SnO2晶格中存在两种本征磁性来源,分别为Sc掺杂诱导的未配对O-2p态电子的自旋极化和O空位诱导的未配对Sn-5p态电子的自旋极化。由于两种未配对的弱束缚电子分别由电离施主和受主诱导产生,因此二者之间存在电荷补偿效应,在特定配比下能够使SnO2晶格出现磁性猝灭。  相似文献   

11.
The electronic properties of one-dimensional clusters of N atoms or molecules have been studied. The model used is similar to the Kronig–Penney model with the potential offered by each ion being approximated by an attractive δ-function. The energy eigenvalues, the eigenstates and the density of states are calculated exactly for a linear cluster of N atoms or molecules. The dependence of these quantities on the various parameters of the problem show interesting behavior. Effects of random distribution of the positions of the atoms and random distribution of the strengths of the potential have also been studied. The results obtained in this paper can have direct applications for linear chains of atoms produced on metal surfaces or for artificially created chains of atoms using scanning tunneling microscope or in studying molecular conduction of electrons across one-dimensional barriers.  相似文献   

12.
    
In this work, first-principles density functional theory simulations have been performed to investigate the influence of nitrogen (N) defect on the supercell structure, electronic structure and photocatalytic properties of g-C3N4/WS2 heterojunctions. Analyses of calculated binding energies and the lattice mismatch ratios led us to confirm that N-deficient g-C3N4 and WS2 were in parallel contact and form a stable heterojunction. Furthermore, the work functions, molecular dynamics simulations, charge density differences, band structures, DOS, electronic and optical properties and absorption spectra of different g-C3N4/WS2 heterojunctions have been analyzed in detail. It is revealed that the compositing of N-deficient g-C3N4 with WS2 improves the separation of photoinduced electron-hole pairs. N-defect enhances the visible light absorption of the heterojunction, due to the introduction of impurity energy levels. Moreover, the introduction of defect species further improves the photocatalytic performance of g-C3N4/WS2 heterojunction in the visible region.  相似文献   

13.
We present an application of the generalised proximity effect theory. The theory has been used to determine the energy gap (Δg) in proximised transition metal/aluminium bilayer structures such as Nb/Al, Ta/Al, V/Al and Mo/Al. These bilayers have different film thicknesses ranging from 5 to 260 nm. For the cases of Nb/Al, Ta/Al and V/Al bilayers, the interface parameters γ and γBN (here we define γ as the ratio of the products of normal state resistivity and coherence length in each film of the bilayer while γBN is the ratio of the boundary resistance between films 1 and 2 to the product of the resistivity and coherence length in the second film), which were used as input parameters to the model, were inferred experimentally from an existing bilayer of each kind and then suitably modified for different film thicknesses. This experimental assessment is therefore based on a comparison of measurements of the critical temperature and the energy gap at 300 mK with the predictions from the model for various values of γ, γBN. The energy gap of the bilayer was experimentally determined by using symmetrical superconducting tunnel junctions (STJs) of the form S–Al–AlOx–Al–S, where each electrode corresponds to a proximised bilayer. However for the case of Mo/Al bilayers the interface parameters were determined theoretically since currently no STJ data for this configuration are available. The results for the Nb/Al, Ta/Al and V/Al bilayers have also then been compared to experimentally determined energy gaps found for a series of STJs with different film thicknesses. The correspondence between experiment and theory is very good.  相似文献   

14.
近年来,C、Cu单掺杂ZnO获得p型化的相关研究甚多,然而对于C-Cu共掺杂ZnO却鲜有研究.本文采用基于密度泛函理论的第一性原理方法,计算分析比较了C、Cu单掺杂、C-Cu分别以1:1、1:2、2:1比例共掺杂ZnO体系的晶格结构、电子态密度、空穴有效质量和形成能.研究结果表明:在本文的计算方法和模型下,各掺杂体系均能获得p型ZnO;当C-Cu以1:2比例掺入ZnO时,容易获得p型化水平更高、电子迁移效应更优、导电性更好、形成能低掺杂更稳定的半导体新材料.  相似文献   

15.
基于第一性原理的计算方法研究了纯CeO_2、Co掺杂CeO_2和同时引入氧空位Vo和Co掺杂的CeO_2稀磁半导体体系.通过计算体系的能带结构和态密度,探讨了该体系磁性产生的机制.计算发现,纯CeO_2体系不具有磁性;没有氧空位Vo的Co掺杂CeO_2体系中,Co离子之间通过O原子发生超交换反铁磁耦合,体系无铁磁性;当氧空位Vo和Co离子同时存在于CeO_2体系中时,Co离子之间通过氧空位Vo发生铁磁耦合,该体系表现出铁磁性能.另外,由氧空位Vo诱导的Co离子之间的铁磁耦合不仅发生在紧邻的两个Co离子,而且可以扩展到几个原子距离的长度.计算结果证明了氧空位Vo诱导铁磁性耦合机制.本文工作将为CeO_2基稀磁半导体体系制备与磁学性质的研究提供支持.  相似文献   

16.
The ab initio calculations are carried out to investigate the effect of hydrogen, oxygen and nitrogen terminations on the properties of the band edge and the values of the band-gap, as well as the oscillator strength of the silicon nanonets (SiNNs). The oxygen functional groups are found to effectively preserve the direct band-gap nature of the SiNNs, and even change the luminescence properties of the silicon nanowires (SiNWs) to the direct band-gap transition. The appreciable oscillator strength of the first direct transition is obtained for the oxygen terminated nanostructure. The study on the electronic states indicates that the variation of the band edge caused by the surface terminations is attributed to the change of the state compositions. These surface modifications are thought to be useful for silicon band-gap engineering in the area of optoelectronics.  相似文献   

17.
金属与非金属共掺TiO2半导体以提高对可见光的利用率是近期研究的一个热点。本文通过基于密度泛函理论的平面波超软赝势方法,计算了Mn-N共掺杂、Mn-C共掺杂、Mn-S共掺杂TiO2晶体的能带、态密度、分态密度和光学性质。通过对比Mn-N共掺杂、Mn-C共掺杂、Mn-S共掺杂,这三种掺杂都在一定程度上改善了锐钛矿型二氧化钛对可见光的利用率,但Mn-C共掺杂相比于另外两种掺杂来说,对可见光的响应效果更好,电子从杂质能级跳跃到导带需要1.94eV能量,该能量恰好对应可见光吸收光谱中的吸收峰。并且Mn-C共掺杂对可见光的的吸收率,反射率都远高于其它两种掺杂体系。  相似文献   

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