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1.
本文用密度泛函理论的第一性原理,研究了C单掺、Al单掺、C-Al共掺GaN体系的电子结构及光学性质.通过分析发现,与本征GaN相比,掺杂后体系都发生了晶格畸变,其中C-Al共掺GaN体系,较容易形成且禁带宽度明显减小,形成了P型半导体,显著降低了电子跃迁所需要的能量;另外,该共掺体系的静介电常数最大,极化能力最强,介电虚部的主峰向低能区域偏移,并且吸收光谱在可见光范围内产生了红移现象,这都体现了C-Al共掺可以拓展GaN体系对可见光的响应范围.因此,C-Al共掺将有望提高GaN体系的光催化性能.  相似文献   

2.
利用密度泛函理论(DFT)研究了AlN的六角纤锌矿结构(B4),岩盐矿结构(B1),过渡态中间相六方结构(Hexa)和过渡态中间相四方结构(Tetra),计算了AlN在不同压力下B4和B1结构和过渡态中间相六方结构和四方结构的焓值,计算发现B4和B1相的转变压力是17.27 GPa,低压区中间相六方结构稳定,高压区中间相四方结构更稳定,AlN的常见的B4结构是直接带隙结构,带隙宽度是4.095 eV,带隙宽度与外压力之间关系符合二次函数方程,与其它理论研究结果一致.  相似文献   

3.
The local electronic structure and magnetic properties of GaAs doped with 3d transition metal (Sc, Ti, V, Cr, Mn, Fe, Co, Ni) were studied by using discrete variational method (DVM) based on density functional theory. The calculated result indicated that the magnetic moment of transition metal increases first and then decreases, and reaches the maximum value when Mn is doped into GaAs. In the case of Mn concentration of 1.4%, the magnetic moment of Mn is in good agreement with the experimental result. The coupling between impure atoms in the system with two impure atoms was found to have obvious variation. For different transition metal, the coupling between the impure atom and the nearest neighbor As also has different variation. Supported by the National Natural Science Foundation of China (Grant No. 10347010)  相似文献   

4.
利用第一性原理计算,研究了Cr与C共掺锐钛矿型TiO_2的能带的结构,态密度和光学性质.我们构建了两种不等价的Cr与C紧邻共掺体系:CrC_1-TiO_2和CrC_2-TiO_2.CrC_1-TiO_2体系在价带上方出现了主要由C-2p轨道和Cr-3d轨道耦合成的子带.同时,由于姜-泰勒变形效应,Cr-3d轨道的t_(2g)轨道进一步分裂的成Cr-3d_(yz)轨道在导带底形成附加带,有效带隙较纯TiO_2相比变窄了0.84eV.CrC_2-TiO_2体系带隙中有深带隙态存在,由于深间隙态的存在,价带顶到深带隙的能量宽度为0.84eV,电子从价带顶转移到导带底的所需要的能量将大大减小.最后,我们对纯TiO_2和Cr与C紧邻共掺TiO_2的光学特性进行了计算.结果显示Cr与C共掺TiO_2的光学吸收谱都有很好的可见光区域分布,大大提高了太阳光的利用率.  相似文献   

5.
乐伶聪  马新国  唐豪  王扬  李翔  江建军 《物理学报》2010,59(2):1314-1320
采用平面波超软赝势方法计算了过渡金属(TM)(Fe,Co或者Ru)掺杂钛酸纳米管的电子结构及光学性质.对TM取代钛酸纳米管层间间隙位H+的几何结构进行优化,发现掺杂对几何结构的影响较大,其中Co或者Ru掺杂的形成能均较低.此外,掺杂的TM与周围的O原子成键,有形成固熔体的趋势.掺杂后的能带结构分析表明:Fe,Co或者Ru掺杂导致钛酸纳米管禁带宽度减小并且于禁带中引入了新的能级,这主要归因于b1g(dx2-y2)及a1g(dz2)态的出现;部分杂质能级处于半填充状态,成为空穴的俘获中心,减少电子和空穴的复合;掺杂后,价带顶向低能方向移动,使价带中形成的空穴氧化性更强.最后,掺杂的钛酸盐纳米管的吸收光谱显示,Ru掺杂的钛酸纳米管导致其在可见光范围内有更强的吸收.  相似文献   

6.
廖建  谢召起  袁健美  黄艳平  毛宇亮 《物理学报》2014,63(16):163101-163101
基于密度泛函理论的第一性原理计算,研究了横截面为五边形和六边形的核壳结构硅纳米线的过渡金属Co原子替代掺杂.通过比较形成能发现,核心位置掺杂、壳层单链掺杂以及外壳层全替代掺杂的硅纳米线都具有稳定性,其中核心位置掺杂结构的稳定性最高.掺杂体系均呈现金属性,随着掺杂浓度的增加,电导通道数增加.Co原子掺杂的硅纳米线呈现铁磁性,具有磁矩.Bader电荷分析表明,电荷从Si原子转移至过渡金属Co原子.与自由态时过渡金属Co原子的磁矩相比,体系中Co原子的磁矩有所降低,这主要是由Co原子4s轨道向3d/4p轨道的电荷转移以及4s,3d,4p的上自旋电子转移至下自旋导致的.  相似文献   

7.
Optical absorption, Electron Paramagnetic Resonance (EPR) studies are carried out on lead zinc phosphate glass systems doped with Cr3+ and VO2+. From optical absorption investigations the crystal-field parameters Dq, B and C are evaluated. EPR measurements on Cr3+ systems indicate that Cr3+ ions are located at sites with low symmetry. EPR spectra of vanadyl doped system revealed the characteristic nature of vanadyl ion. Spin-Hamiltonian and hyperfine values are evaluated for both the systems. Optical absorption spectra of vanadyl doped system revealed three bands that are characteristic of VO(II) ion in tetragonally distorted octahedral site. By correlating both EPR and optical data, the dipolar coupling constant (P) and Fermi-constant coupling parameter (κ) and molecular orbital coefficients β?2, eπ?2 are evaluated. Electron Paramagnetic Resonance and optical absorption studies showed that the chemical bonds of Cr3+ ions and VO2+ ions with the ligands have more covalent nature. From these studies it is also observed that lead spinals are playing major key role in sustaining the covalent nature of bonding.  相似文献   

8.
基于密度泛函第一性原理计算,系统研究了Mg12O12笼状团簇组装一维纳米线及其掺杂3d族元素体系的几何结构与电子结构。结果表明:Mg12O12团簇组装一维纳米线为非磁性半导体,带隙值为3.16 eV;掺杂Sc和V后,体系由半导体转变为金属;掺杂Ti、Cr、Mn、Fe、Co、Ni、Cu后体系仍然保持半导体特性、但带隙值明显减小,而掺杂Zn时带隙值变化不大;掺杂V、Cr、Mn、Fe、Co、Ni、Cu后纳米线具有磁性。  相似文献   

9.
本文利用基于密度泛函理论的第一性原理平面波赝势方法分别计算了本征及过渡金属掺杂单层MoS_2的晶格参数、电子结构和磁性性质.计算结果显示,过渡金属掺杂所引起的晶格畸变与杂质原子的共价半径有联系,但并不完全取决于共价半径的大小.分析电子结构可以看到,VIIB、VIII和IB族杂质中除Ag和Re外的掺杂体系都对外显示磁性,磁矩主要集中在掺杂的过渡金属原子上.掺杂体系的禁带区域都出现了数目不等的杂质能级,这些杂质能级主要由杂质的d、S的3p和Mo的4d轨道组成.  相似文献   

10.
Applied to transition metal oxides and silicate and aluminate alloys, a classification scheme that separates non-crystalline dielectrics into three groups with different amorphous morphologies, demonstrates a direct correlation between stability against crystallization and oxygen atom coordination. It also provides a local bonding model for molecular orbital (MO), calculations that are based on the coordination and symmetry of transition metal atoms and the orbital energies of their oxygen neighbors. These calculations provide important insights into the electronic structure of transition metal dielectrics, e.g. the role of anti-bonding d-states in determining conduction band offset energies with respect to Si.  相似文献   

11.
基于密度泛函理论的第一性原理计算方法,系统地研究了不同3d过渡金属元素(Sc、Ti、V、Cr、Mn、Fe、Co和Ni)掺杂Al12N12纳米线的几何结构、稳定性和电子结构.结果表明:所有掺杂体系均是热力学稳定的;掺杂Ni时体系保留了原有的非磁性间接带隙半导体特性;当掺杂其它原子(Sc、Ti、V、Cr、Mn、Fe、Co)时体系仍然保持为半导体,但带隙明显减小.掺杂过渡金属原子对于Al12N12纳米线的电子结构具有明显的调控作用,在能带调控和光电方面有潜在的应用前景.  相似文献   

12.
By performing the first-principles calculations, we investigated the sensitivity and selectivity of transitional metal (TM, TMSc, Ti, V, Cr and Mn) atoms doped graphene toward NO molecule. We firstly calculated the atomic structures, electronic structures and magnetic properties of TM-doped graphene, then studied the adsorptions of NO, N2 and O2 molecules on the TM-doped graphene. By comparing the change of electrical conductivity and magnetic moments after the adsorption of these molecules, we found that the Sc-, Ti- and Mn-doped graphene are the potential candidates in the applications of gas sensor for detection NO molecule.  相似文献   

13.
范航  王珊珊  李玉红 《物理学报》2015,64(9):97101-097101
本文采用第一性原理的方法系统研究了UO2的晶体结构、电子结构和弹性性质. 在计算中采用广义梯度近似结合Hubbard U项描述电子的局域强关联效应. 首先通过计算能带带隙大小并与理论值比较的方法, 得到了合理的有效库仑相关作用能(Ueff)的取值, 同时通过态密度的计算, 进一步验证了Ueff取值的合理性. 计算得到UO2中U原子的Ueff值为3.30 eV (Ueff=U-J, U=3.70 eV, J=0.40 eV). 应用此参数计算得到的UO2晶格常数为5.54 Å, 带隙宽度为2.17 eV. 该结果优于目前现有的研究结果, 同时在同样的Ueff值条件下计算所得到的弹性常数与实验值也符合得较好. 相较于之前的基于实验测量并分析得到的Ueff值, 我们所采用的方法在对UO2性质描述上更为准确. 不同的有效库仑相关作用能取值下的态密度结果表明, 有效库仑相关作用能的大小可以影响铀原子5f电子轨道的分布.  相似文献   

14.
钛酸铅(PTO)因具有优异的铁电、压电特性及光学性质而备受关注.但B、N掺杂对顺电相PTO电子结构和光学性质的影响还不明确,因此,利用第一性原理对立方PTO开展准确的性质预测尤为必要.本文采用广义梯度近似的PBE泛函(GGA-PBE)和杂化泛函(HSE06)研究了B、N替位掺杂(BO、NO)和O空位(VO)对PTO的基态性质、电子结构和光学性质的影响.研究表明:贫氧态的PTO比富氧态更容易形成杂质缺陷,且NO缺陷最难形成.当BO、NO缺陷存在时,PTO的价带顶和导带底向低能量方向移动,在两者之间出现杂质能级,使其导电性能提高且含BO的PTO为间接带隙半导体,而含NO的PTO为直接带隙半导体. NO体系在波长大约为230 nm处有最大吸收峰,该峰主要源于O 2p和Ti 3d之间的电子跃迁,且NO体系对可见光的吸收能力最强,有望提高PTO的光催化能力.  相似文献   

15.
Utilizing first-principles calculations, the electronic structures, magnetic properties and band alignments of monolayer MoS2 doped by 3d transition metal atoms have been investigated. It is found that in V, Cr, Mn, Fe-doped monolayers, the nearest neighboring S atoms (SNN) are antiferromagnetically polarized with the doped atoms. While in Co, Ni, Cu, Zn-doped systems, the SNN are ferromagnetically coupled with the doped atoms. Moreover, the nearest neighboring Mo atoms also demonstrate spin polarization. Compared with pristine monolayer MoS2, little change is found for the band edges' positions in the doped systems. The Fermi level is located in the spin-polarized impurity bands, implying a half-metallic state. These results provide fundamental insights for doped monolayer MoS2 applying in spintronic, optoelectronic and electronic devices.  相似文献   

16.
过渡金属掺杂ZnO的电子结构和光学性质   总被引:2,自引:0,他引:2       下载免费PDF全文
利用基于密度泛涵理论的超软赝势法(USPP),结合局域密度近似(LDA),对过渡族金属离子掺杂的纤锌矿型ZnO做第一性原理计算,得到了它的平衡晶格常数、结合能、电子态密度分布、能带结构、介电函数、光学吸收系数等性质,详细讨论了掺杂后ZnO化合物的电子结构及成键情况,并结合实验结果定性分析了掺杂后光学性质的变化. 关键词: 氧化锌 掺杂 第一性原理 光学性质  相似文献   

17.
采用基于密度泛函理论(DFT)的第一性原理赝势平面波方法,对过渡金属V、Cr、Mn 掺杂ZnS的超晶胞体系进行了几何结构优化,计算了晶格常数、电子结构与磁学性质。研究结果表明:掺入V,Cr后,ZnS表现出明显的半金属性,而掺入Mn后,半金属性不明显;掺入过渡金属TM(V,Cr,Mn)后系统产生的磁矩主要有杂质的3d态电子贡献,且磁矩的大小与过渡金属的电子排布有关。  相似文献   

18.
基于密度泛函理论的第一性原理平面波超软赝势方法,计算了本征ZnO,Cu、Fe单掺杂和Cu-Fe共掺杂ZnO的电子结构和光学性质.计算结果显示:Cu掺杂属于p型掺杂,Fe掺杂属于n型掺杂,单掺杂时Cu-3d态电子和Fe-3d态电子均在禁带形成杂质能级,从而提高ZnO的载流子浓度,改善ZnO的导电性能,而Cu-Fe共掺杂时ZnO半导体进入简并态,呈现金属特性.掺杂后的ZnO介电函数虚部变化主要集中在低能量区域,光谱吸收系数及反射率曲线发生红移,其中本征ZnO对太阳光谱有较好的透射性,Fe单掺杂和Cu-Fe共掺杂ZnO对可见光谱有相似的吸收效果,而Fe单掺杂ZnO对近紫外区域的光谱透射率更小,适用于制备防紫外线薄膜.  相似文献   

19.
《Physics letters. A》2019,383(21):2472-2480
We studied the adsorption behavior of CO molecules over graphitic carbon nitride (gCN) and VIII transition metals (TM)-embedded gCN systems (TM=Ni, Pd, and Pt atoms) using density functional theory. The results indicated that the Pt-embedded gCN is excellent candidate for adsorption of CO molecules with adsorption energy of −2.77 eV, which is much better than those of the other adsorbents. Furthermore, it was observed that the band gap energies of TM-embedded systems were less than that of pristine gCN and decoration of transition metal atoms leads to the formation of mid gap impurity states, resulting in increase of electrical conductivity. Additionally, the Lowdin charges displayed that upon adsorption of CO molecules, this molecule acts as an electron acceptor and gCN systems behave as an electron donor with electron transfer from d-orbitals of transition metal atoms to the states of CO molecule. The results of spin polarized band structure indicated that the pristine gCN, Ni and Pd-embedded systems are non-magnetic, whereas Pt-embedded gCN induces non-zero magnetic moment equal to 1.35 μB. Therefore, our results revealed that among the TM-embedded systems, Pt-embedded gCN is more effective than those of the other adsorbents in sensing and removing of this gas from the atmosphere.  相似文献   

20.
Four vertical heterostructures based on two-dimensional transition-metal dichalcogenides (TMDs) – MoS2/GeC, MoSe2/GeC, WS2/GeC, and WSe2/GeC, were studied by density functional theory calculations to investigate their structure, electronic characteristics, principle of photogenerated electron–hole separation, and optical-absorption capability. The optimized heterostructures were formed by van der Waals (vdW) forces and without covalent bonding. Their most stable geometric configurations and band structures display type-II band alignment, which allows them to spontaneously separate photogenerated electrons and holes. The charge difference and built-in electric field across the interface of these vdW heterostructures also contribute to preventing the photogenerated electron–hole recombination. Finally, the high optical absorption of the four TMD-based vdW heterostructures in the visible and near-infrared regions indicates their suitability for photocatalytic, photovoltaic, and optical devices.  相似文献   

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