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1.
张朋  刘亲壮  苏付海  刘强春  刘哲  宋文海  戴建明 《物理学报》2013,62(2):27101-027101
利用传统的固相反应法制备了BaSn1-xMnxO3(x=0,0.05,0.10和0.13)多晶样品,系统研究了不同Mn掺杂量对BaSnO3样品的结构、光学及磁学性质的影响.通过X射线衍射分析表明此掺杂化合物形成了具有钙钛矿结构的单相,在掺杂范围内没有观察到第二相出现.漫反射光谱测试分析发现随着Mn掺杂浓度的增加,其光学吸收边红移并逐渐平缓化,拉曼光谱测试表明拉曼振动模式也发生了变化,进一步证明Mn离子取代了Sn位.磁场下的光致发光谱测试表明样品在近红外区的发光可能与Sn离子有关.磁学测量则显示样品在低温具有一定铁磁性,其来源可用F心交换机制来解释.  相似文献   

2.
基于荷能离子与固体相互作用特点,提出了一种新的制备光致发光材料的方法-- 高能重离子辐照. 用这种方法研究了SiO2薄膜的光致发光特性,发现高能84K r和40Ar离子辐照可在注碳SiO2薄膜样品中产生强的蓝-紫光发射带,掺杂碳增强了辐照样品的发光特性.  相似文献   

3.
基于荷能离子与固体相互作用特点 ,提出了一种新的制备光致发光材料的方法——高能重离子辐照 .用这种方法研究了SiO2 薄膜的光致发光特性 ,发现高能 84Kr和40Ar离子辐照可在注碳Si O2 薄膜样品中产生强的蓝-紫光发射带 ,掺杂碳增强了辐照样品的发光特性.  相似文献   

4.
徐大庆  张义门  娄永乐  童军 《物理学报》2014,63(4):47501-047501
通过Mn离子注入非故意掺杂GaN外延层制备了GaN:Mn薄膜,并研究了退火温度对GaN:Mn薄膜的微结构、光学及磁学特性的影响.对不同退火温度处理后的GaN:Mn薄膜的拉曼谱测试显示,出现了由与离子注入相关的缺陷的局域振动(LV)和(Ga,Mn)N中Mn离子的LV引起的新的声子模.在GaN:Mn薄膜的光致发光谱中观察到位于2.16,2.53和2.92 eV处的三个新发光峰(带),其中位于2.16 eV处的新发光带不能排除来自Mn相关辐射复合的贡献.对GaN:Mn薄膜的霍尔测试显示,退火处理后样品表现出n型体材料特征.对GaN:Mn薄膜的振动样品磁强计测试显示,GaN:Mn薄膜具有室温铁磁性,其强弱受Mn相关杂质带中参与调节磁相互作用的空穴浓度的影响.  相似文献   

5.
Fe掺杂对CdS光学特性的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
采用低压金属有机化学气相沉积技术,在固定源流量的条件下,通过调节衬底温度(270~360℃)生长了不同Fe掺杂浓度的CdS薄膜。光谱测量表明低铁掺杂对CdS晶格振动的影响较小,但对光致发光性质影响较为明显。样品的光致发光谱包括两部分:2.5eV附近带-带跃迁的发光以及2.0~2.4eV之间与缺陷相关的发光。随着铁含量的增加,带-带跃迁逐渐被抑制,发光光谱被缺陷相关的发光主导,同时薄膜的电导也由n型转为p型,说明Fe离子掺入在薄膜引入了受主杂质。通过不同激发密度下的光致发光光谱测量,我们将2.0~2.4eV的发光归结为铁受主相关的D-A对发射,并根据掺杂浓度和发光峰位置估算了Fe受主的能级位置。  相似文献   

6.
钴掺杂氧化锌是室温稀磁半导体的重要候选材料,其磁学特性和钴掺杂浓度、显微结构及光学性质密切相关。磁控溅射具有成本低、易于大面积沉积高质量薄膜等特点,是广受关注的稀磁半导体薄膜制备方法。利用磁控溅射方法制备了不同浓度的钴掺杂氧化锌薄膜,并对其显微结构、光学性质和磁学特性进行了系统分析。结果表明:当掺杂原子分数在8%以内时,钴掺杂氧化锌薄膜保持单一的铅锌矿晶体结构,钴元素完全溶解在氧化锌晶格之中;薄膜在可见光区域有很高的透射率,但在567, 615和659 nm处有明显吸收峰,这些吸收峰源于Co2+处于O2-形成的四面体晶体场中的特征d-d跃迁。磁学特性测试结果表明钴掺杂氧化锌薄膜具有室温铁磁性,且钴的掺杂浓度对薄膜的磁学特性有重要影响。结合薄膜结构、光学和电学性质分析,实验中观察到的室温铁磁性应源于钴掺杂氧化锌薄膜的本征属性,其铁磁耦合机理可由束缚磁极化子模型进行解释。  相似文献   

7.
钴掺杂氧化锌是室温稀磁半导体的重要候选材料,其磁学特性和钴掺杂浓度、显微结构及光学性质密切相关。磁控溅射具有成本低、易于大面积沉积高质量薄膜等特点,是广受关注的稀磁半导体薄膜制备方法。利用磁控溅射方法制备了不同浓度的钴掺杂氧化锌薄膜,并对其显微结构、光学性质和磁学特性进行了系统分析。结果表明:当掺杂原子分数在8%以内时,钴掺杂氧化锌薄膜保持单一的铅锌矿晶体结构,钴元素完全溶解在氧化锌晶格之中;薄膜在可见光区域有很高的透射率,但在567,615和659nm处有明显吸收峰,这些吸收峰源于Co2+处于O2-形成的四面体晶体场中的特征d-d跃迁。磁学特性测试结果表明钴掺杂氧化锌薄膜具有室温铁磁性,且钴的掺杂浓度对薄膜的磁学特性有重要影响。结合薄膜结构、光学和电学性质分析,实验中观察到的室温铁磁性应源于钴掺杂氧化锌薄膜的本征属性,其铁磁耦合机理可由束缚磁极化子模型进行解释。  相似文献   

8.
程兴旺  李祥  高院玲  于宙  龙雪  刘颖 《物理学报》2009,58(3):2018-2022
采用溶胶-凝胶法制备出具有室温铁磁性的Co掺杂的ZnO稀磁半导体材料. 通过对样品的结构、磁性和发光特性的研究发现,样品具有室温铁磁性,并发现其铁磁性源于磁性离子对ZnO中Zn离子的取代. 对不同温度制备的样品的磁性以及其发光特性的变化研究发现,样品的铁磁性与样品中锌间隙位(Zni)缺陷的密度有关. 关键词: ZnO 稀磁半导体 铁磁性  相似文献   

9.
通过晶体结构、电学和磁学测量,我们系统地研究了Fe掺杂的烧绿石Bi_(2-x)Fe_xIr_2o_7(x=0.1,0.2,0.3,0.4)样品.X射线衍射证实了高结晶的Bi_(2-x)Fe_xIr_2o_7保持立方结构.样品体系显示出金属-绝缘体转变:当x=0.1,转变温度为63.870K.随着Fe含量的增加,转变温度呈上升趋势.掺杂样品显示出增强的反铁磁性,并随着Fe掺杂增加,反铁磁性增强.当掺杂量增加到0.3时,样品发生类自旋玻璃态转变.  相似文献   

10.
通过晶体结构、电学和磁学测量,我们系统地研究了Fe掺杂的烧绿石Bi_(2-x)Fe_xIr_2o_7(x=0.1,0.2,0.3,0.4)样品.X射线衍射证实了高结晶的Bi_(2-x)Fe_xIr_2o_7保持立方结构.样品体系显示出金属-绝缘体转变:当x=0.1,转变温度为63.870K.随着Fe含量的增加,转变温度呈上升趋势.掺杂样品显示出增强的反铁磁性,并随着Fe掺杂增加,反铁磁性增强.当掺杂量增加到0.3时,样品发生类自旋玻璃态转变.  相似文献   

11.
Raman scattering has been used to study the influence of cobalt, an effective dopant to obtain SrTiO3 magnetic oxide, on the lattice dynamics of SrTiO3. It is found that Co doping increases the lattice defects and induces a Raman vibration mode of 690 cm−1. On the other hand, the ferromagnetism dependence on the x and annealing temperature was clearly and coherently observed in SrTi1−xCoxO3 (x = 0, 0.01, 0.03 and 0.05) nanoparticles. It is found that the ferromagnetism of SrTi1−xCoxO3 nanoparticles is weakly related to crystal deformation and oxygen vacancies in SrTiO3. So, F-center model can explain the origin of the ferromagnetism in the prepared Co-doped SrTiO3 samples. At the same time, the finding of large room-temperature ferromagnetism (1.6 emu/g) in this system would stimulate further interest in the area of more complicated ternary oxides.  相似文献   

12.
This paper reports on the influence of the sintering temperature and atmosphere and transition-metal doping on the magnetic properties of nanocrystalline and bulk In2O3. Undoped nanocrystalline In2O3 is diamagnetic whatever the sintering temperature and atmosphere. All single-phase transition-metal-doped In2O3 samples are paramagnetic, with a paramagnetic effective moment originating from weakly interacting transition metal ions. No trace of ferromagnetism has been detected even with samples sintered under argon, except extrinsic ferromagnetism for samples with magnetic dopant concentrations exceeding the solubility limit.  相似文献   

13.
Cobalt-doped TiO2 nanoparticles were synthesized by sol-gel method. The associated structural, optical, compositional and magnetic properties of the nanoparticles as a function of cobalt concentration have been systematically studied. The X-ray powder diffraction reveals that all samples have pure anatase phase tetragonal system and the lattice parameter analysis indicated that Co ions may substitute into the lattice of TiO2. The average particle size is 15 nm, when found through transmission electron microscope. Optical spectroscopy measurement showed that the bandgap value decreases upon increasing Co concentration. The magnetic measurements revealed that the enhanced room temperature ferromagnetism (RTFM) strongly depends on the doping content.  相似文献   

14.
Influence of Co doping for In in In2O3 matrix has been investigated to study the effect on magnetic vs. electronic properties. Rietveld refinement of X-ray diffraction patterns confirmed formation of single phase cubic bixbyite structure without any parasitic phase. Photoelectron spectroscopy and refinement results further revealed that dopant Co2+ ions are well incorporated at the In3+ sites in In2O3 lattice and also ruled out formation of cluster in the doped samples. Magnetization measurements infer that pure In2O3 is diamagnetic and turns to weak ferromagnetic upon Co doping. Hydrogenation further induces a huge ferromagnetism at 300 K that vanishes upon re-heating. Experimental findings confirm the induced ferromagnetism to be intrinsic, and the magnetic moments to be associated with the point defects (oxygen vacancies Vo) or bound magnetic polarons around the dopant ions.  相似文献   

15.
Magnetic properties of bulk SrTi1−xCoxO3−δ solid solutions (for x from 0 to 0.05), prepared in air as those partially reduced, were studied by following the influence of the dopant concentration and valence. A strong paramagnetic and/or diamagnetic contribution and an extremely weak ferromagnetic contribution maintained up to room temperature is observed for all the studied compositions, including the undoped samples. While the paramagnetic contribution shows a classical evolution with cobalt concentration and valence, the ferromagnetic part of the magnetization seems to be independent of the doping process. While some of the observations can support the assumption of an intrinsic property of the SrTiO3 matrix, the hypothesis of a ferromagnetism associated to some contamination with external magnetic impurities cannot be completely discarded and will be retained here.  相似文献   

16.
Two-dimensional 1T′ phase ReS2, a transition metal dichalcogenide, has a unique structure and electronic properties that are independent of thickness. The pure phase is a nonmagnetic semiconductor. Using density functional theory calculations, we show that ReS2 can be tuned to a magnetic semiconductor by doping with transition metal atoms. The magnetism mainly comes from the dopant transition metal and neighboring Re and S atoms as a result of competition between exchange splitting and crystal field splitting. ReS2 doped with Co can be considered as a promising diluted magnetic semiconductor owing to its strong ferromagnetism with long-range ferromagnetic interaction, high Curie temperature (above room temperature) and good stability. These findings may stimulate experimental validation and facilitate the development of new atomically thin diluted magnetic semiconductors based on transition metal dichalcogenides.  相似文献   

17.
Zn0.95−xCo0.05CuxO powders have been synthesized by the sol-gel method and the structural, magnetic and electrical properties of the powders have been investigated. X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS) indicate that the Co ions do not change the ZnO wurtzite structure. Magnetic measurements indicate that Co doping can induce room temperature (RT) ferromagnetism and the addition of Cu to the powders further increases the magnetic moment per Co ion. The effects of the introduction of Cu as an acceptor dopant in the host matrix are further studied using resistance measurements. It is demonstrated experimentally that acceptor doping plays an important role in realizing dominant ferromagnetic ordering in Co doped ZnO powders.  相似文献   

18.
N doped TiO is nonmagnetic, in which spin-split impurity states are not induced near the Fermi energy (EF) by N dopant. N doped TiO2 along with transition-metal (TM) doped TiO is magnetic, in which spin-split impurity states are induced across EF. The magnetic moment is determined by the 3d4s electron configurations and the valence states of TM-dopant ions when they substitute Ti. Hence, the origin of ferromagnetism of N doped TiO2 and TiO is not closely related to the width of the band gaps of host oxides, but would be crucially related to that if the dopant can induce spin-split impurity states near EF.  相似文献   

19.
《Physics letters. A》2020,384(29):126754
Magnetic anisotropy energy (MAE) plays a key role for 2D magnetic materials, which have attracted significant attention for their promising applications in spintronic devices. Based on first-principles calculations, we have investigated the influence of surface adsorption on the ferromagnetism and MAE of monolayer CrI3. We find that Li adsorption can dramatically enhance its ferromagnetism, and tune its easy magnetization axis to the in-plane direction from original out-of-plane at certain coverage of Li. The monotonic enhancement of in-plane magnetism in CrI3 as the coverage of Li increases are attributed to electrostatic doping induced by charge transfer between Li atoms and I atoms, as supported by the charge doping simulation. The tunable robust magnetic anisotropy may open new promising applications of CrI3–based materials in spintronic devices.  相似文献   

20.
江阔  宫声凯 《中国物理 B》2009,18(7):3035-3039
The effect of cobalt-doping on the magnetic, transport and magnetoresistance characteristics of La1-xSrxMnO3 was investigated. The results show that the magnetoelectric property of rare-earth doped manganites is greatly affected by substitution of Co for Mn sites. The Curie temperature as well as the magnetic moment decreases with the increase of doping concentration, and the samples exhibit obvious characteristics of the spin glass state. Moreover, the magnetoresistance is evidently modulated by doping concentration, and the relevant temperature dependence is also suppressed. In addition, low-temperature magnetoresistance is significantly promoted as doping concentration increases, which renders a value of approximately 50% in the temperature range of 5--200~K and varies within 12.5%. It can be attributed to the effect of spin scattering, induced by cobalt doping, on the itinerant electrons of Mn ions, thus introducing a spin-disorder region into the ferromagnetic region of double-exchange interaction between neighbouring Mn3+ and Mn 3+ ions.  相似文献   

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