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1.
 以溶胶-凝胶法制备Fe3+,Ce3+共掺杂的纳米TiO2光催化剂.研究了不同的三价铁、三价铈掺杂量及烧结温度对日光灯照射下TiO2光催化降解甲基橙性能的影响.结果表明,Fe3+,Ce3+共掺杂能抑制TiO2晶粒的生长,并使TiO2的吸收带边明显红移约100nm;在普通日光灯下,共掺杂样品光催化效果优于单掺样品,Fe3+和Ce3+共掺杂对提高TiO2在可见光下的催化活性具有协同效应,最佳掺杂量物质的量比为n(Fe3+):n(Ce3+):n(TiO2)=0.005:0.015:1,最佳烧结温度为650℃.  相似文献   

2.
以TiCl4为原料,在(CH2OH)2溶液中通过一步水热法制备单斜相二氧化钛[TiO2(B)]。使用不同质量含量NaBH4对TiO2(B)进行还原改性,调控其内含Ti3+的浓度,合成了含Ti3+的TiO2(B)-NaBH4X样品。采用X射线衍射仪(X-ray diffraction,XRD)、拉曼光谱仪(Raman spectroscopy)、紫外-可见漫反射光谱仪(UV-visible diffuse reflectance spectroscopy,UV-DRS)、X射线光电子能谱仪(X-ray photoelectron spectroscopy,XPS)对材料进行表征。改性后TiO2(B)-NaBH4X样品保持其原有晶体结构,并未发生相变,仅有结晶度的改变。原始TiO2(B)禁带宽度为3.15 eV,通过改性,Ti3+的存在改变了禁带宽度,成功地将禁带宽度降低到2.82 eV,将吸光区域扩展到可见光区域。通过可见光光催化分解水制氢与可见光降解甲基橙试验,确立了TiO2(B)-NaBH43样品有最好的可见光光催化活性,产氢速率达到0.58 μmol·h-1·g-1,6 h降解率达到40%。  相似文献   

3.
在Nd2Fe14B稀土永磁体基体表面,采用磁控溅射(直流+射频)技术制备了Ti/Ni,Ti/Al和Al/Ni等二元合金薄膜和Ti/Al/Ni三元合金薄膜。并通过中性盐雾试验、腐蚀失重计算、电化学腐蚀试验、金相观察等方式,对比研究了不同表面处理对Nd2Fe14B稀土永磁体基体抗腐蚀性能的影响,并构建了腐蚀模型。研究发现:Ti/Ni,Ti/Al和Al/Ni等二元合金薄膜和Ti/Al/Ni三元合金薄膜均有效地提高了Nd2Fe14B稀土永磁体基体耐中性盐雾腐蚀和电化学腐蚀的能力;Ti/Al/Ni三元合金薄膜较Ti/Ni,Ti/Al和Al/Ni等二元合金薄膜有更优良的综合耐腐蚀性能,其磁控溅射工艺参数为:Ar流量60 sccm,基片温度常温,Ni,Al,Ti的溅射功率都为250 W,基片转速20 r·min-1,镀膜均速0.3 nm·s-1,总计溅射时间1 h。  相似文献   

4.
制备了铁酸钴-氧化铝(CoFe2O4-Al2O3)复合材料,并采用扫描电子显微镜(SEM)、X射线衍射(XRD)、比表面积和孔径分析仪对多孔CoFe2O4-Al2O3复合材料的物相和形貌进行了分析. 利用制备的CoFe2O4-Al2O3复合材料活化过硫酸氢钾(PMS)来降解废水溶液中的日落黄(SY),通过研究CoFe2O4-Al2O3材料制备过程中Co2+,Fe3+和Al3+的物质的量之比、煅烧温度和时长对材料催化性能的影响,发现Co2+,Fe3+和Al3+的最佳物质的量之比为1:2:12,最佳煅烧温度为400 ℃和最佳煅烧时长为3 h. 对采用在最优条件下制得的CoFe2O4-Al2O3复合材料作为催化剂,PMS氧化降解含日落黄废水进行研究,考察了pH值、温度、不同体系、PMS用量、CoFe2O4-Al2O3材料用量和一些阴离子对日落黄降解的影响. 结果表明:在pH=7,温度为55 ℃条件下,用0.1 g催化剂和0.125 g PMS能使100 mL质量浓度为0.6 g·L-1的日落黄溶液在30 min内降解率达到99.5%. 同时,碳酸氢根负离子(HCO3-)和硝酸根负离子(NO3-)的加入抑制了日落黄的降解,而Cl-则能促进日落黄的降解. 此外,在进行4次循环使用后,CoFe2O4-Al2O3仍表现出很好的催化性能,日落黄去除效果仍能达到90%以上.  相似文献   

5.
光催化剂TiO2在污水有机物降解中有着巨大优势,但由于对光的利用率过低,需要在TiO2的基础上进行掺杂来改善其光催化性能。本研究利用稀土镧元素对TiO2进行了掺杂分别制备了LaVO4/TiO2和La(NO3)3/TiO2复合光催化剂,并将它们应用于甲基橙的光催化降解反应,证实了LaVO4对TiO2的光催化效果有较明显的增强作用。另外还研究了不同pH条件制备和不同掺杂比例的LaVO4/TiO2光催化效果,pH在10.56左右制备出的LaVO4和掺杂比例为5%的LaVO4制得的LaVO4/TiO2复合光催化剂效果较好。  相似文献   

6.
 采用射频磁控溅射方法制备了TiO2薄膜和La2O3掺杂的TiO2复合薄膜。利用扫描电子显微镜、X射线衍射,紫外可见光谱等材料表征方法研究La2O3掺杂对TiO2薄膜的结构及抗凝血性能的影响。结果表明:La2O3掺杂促使TiO2晶粒沿金红石相(110)晶面择优生长,能细化TiO2纳米晶粒的大小,使薄膜的光学带隙由2.85 eV提高到3.2 eV。血小板粘附实验表明La2O3掺杂的TiO2复合薄膜具有优良的血液相容性能;分析了复合薄膜的抗凝血机理。  相似文献   

7.
环境中化石燃料的大量使用导致CO2浓度不断增加,这是全球变暖的主要原因。为了解决这一问题,开发一种高效廉价的吸附材料至关重要。以甘蔗渣为碳源,尿素为N源,通过碳化和K2CO3活化制备出N掺杂多孔碳。多孔碳的物理化学性质用N2解吸等温线、傅里叶红外光谱、元素分析、扫描电子显微镜观察和X射线衍射等方法进行表征。结果表明:该材料具有高度发达的孔隙、较高的N含量和较高的石墨化程度。当尿素与甘蔗渣混合比是2、碳化温度是800℃、K2CO3浸渍比是3时,多孔碳的比表面积高达2 486.67 m2·g-1,同时CO2吸附量高达250.73 mg·g-1。由此可见以廉价的甘蔗渣制备N掺杂的多孔碳用于吸附CO2具有广阔的应用前景。  相似文献   

8.
采用沉淀法合成LiMn2-xAlxO4x=0.01,0.05,0.10,0.20),pH的范围为10.5~10.6,搅拌速度为350 r/min,水浴温度为55℃,分两次烧结.首次煅烧温度为680℃,保温时间为18 h;第二次煅烧温度为850℃,保温时间为18 h.利用X射线衍射、扫描电子显微镜和电化学方法测试最终产物.测试结果表明:Al3+的掺入有效地改善了LiMn2O4的高温循环性能,使其高温循环容量衰减得到了有效的抑制,尤其当Al3+的掺入量为0.05时,有比其他掺杂量更优的性能.  相似文献   

9.
热处理温度对TiO2薄膜光催化活性影响的研究   总被引:3,自引:0,他引:3  
 采用溶胶-凝胶法及浸渍提拉法,在普通玻璃载玻片上制得了TiO2薄膜,通过差热分析仪及X射线衍射仪分析了热处理温度对TiO2的晶型、晶粒大小、孔隙率及薄膜的光催化活性的影响,结果表明存在一个最佳的热处理温度范围,在这一温度范围内薄膜的光催化活性最好.  相似文献   

10.
应用区分t2和e轨道共价性的差异(包含静电部分和晶场部分)并考虑了低对称场的能量矩阵, 在考虑和忽略静电参量B00的条件下, 分别研究了t2和e轨道共价性的差异对三元半导体ZnGa2Se4:V 3+能级以及低对称分裂的影响; 计算了ZnGa2Se4:V 3+晶体的能级的低对称分裂, 并与实验值进行比较. 计算结果与实验值符合很好. 研究发现: 在对ZnGa2Se4:V 3+晶体的光学性质进行理论研究时, 在能量矩阵的静电和晶场部分同时考虑t2和e轨道共价性的差异是非常有必要的; 晶场参量B00对ZnGa2Se24:V 3+的能级有重要影响, 因此不能忽略.  相似文献   

11.
A self-assembly/precipitate conversion/decomposition process was developed for the controllable synthesis of Fe_3O_4/Bi_(24)Fe_2O_(39)/Bi hollow porous microrods(HPMRs).The results demonstrated that the crystal size,component,and performances of HPMRs could be effectively modulated via changing Fe~(2+)/Bi~(3+)molar ratio(γ).Fe_3O_4/Bi_(24)Fe_2O_(39)/Bi HPMRs exhibited ferromagnetic behavior at room temperature.As Bi and Bi_(24)Fe_2O_(39)contents increased withγ,the saturation magnetization M_sand attenuation constantly decreased,whereas coercivity H_cand impedance matching ratio increased.Compounding Fe_3O_4with small quantities of Bi and Bi_(24)Fe_2O_(39)into HPMRs can significantly enhance microwave absorption.Fe_3O_4/Bi_(24)Fe_2O_(39)/Bi HPMRs formed atγ=1:0.25 exhibited the optimum microwave absorption performance.The minimum R_Lwas-47.3 dB at8.72 GHz,corresponding to 2.4 mm sample thickness.The absorption band with the reflection loss below-20 dB was up to 14.0 GHz for the absorber with a thickness of 1.4-8.0 mm.The results demonstrate that the introduction of electromagnetic transparent materials(Bi_(24)Fe_2O_(39)or Bi)can improve the microwave absorption performances of Fe_3O_4 composites owing to enhanced impedance matching rather than attenuation constant.  相似文献   

12.
Interdiffusion in the Fe2O3-TiO2 system was investigated by the diffusion couple method in the temperature range of 1323 to 1473 K. The diffusion concentration curves of Ti4+ cations were obtained by electron probe microanalysis, according to which the Boltzmann-Matano method optimized by Broeder was used to calculate the interdiffusion coefficients. The interdiffusion coefficients almost increased linearly with the mole fraction of Ti4+ cations increasing, and they were in the range of 10?12–10?11cm2·s?1. The increase of temperature could also lead to the increase of the interdiffusion coefficients at a constant concentration of Ti4+ cations. It was also found that the thickness growth of the diffusion layer obeyed the parabolic rate law.  相似文献   

13.
We apply antilocalization measurements to experimentally study the interactions and exchange between InAs surface accumulation electrons and local magnetic moments of the rare earth ions Sm3?,Gd3?,Ho3?,and Dy3?,of the transition metal ions Ni2?,Co2?,and Fe3?,and of Fe3O4nanoparticles and Fe3?-phthalocyanine deposited on the surface.The influence of the deposited species on the surface electrons is observed through the changes in the spin–orbit scattering and magnetic spin-flip scattering rates,which carry information about magnetic interactions.Experiments indicate a temperature-dependent magnetic spin-flip scattering for Ho3?,Dy3?,Ni2?,and Co2?.Concerning the spin–orbit scattering rate,we observe an increase,except for the cases of Ni2?,Fe3?,Fe3O4nanoparticles and Fe3?-phthalocyanine.We also observe an increase in SO scattering in another system where we study the interactions of Au nanoparticles and ferromagnetic Co0.6Fe0.4nanopillars and an In0.53Ga0.47As quantum well.Experimental results are analyzed and compared to theoretical models.Our method provides a controlled way to probe the quantum properties of two-dimensional electron systems,either on the surface of InAs or in a quantum well.  相似文献   

14.
High quality p-type ZnO film growth by a simple method and its properties   总被引:1,自引:1,他引:0  
P-type ZnO:N films have been grown successfully by chemical vapor deposition (CVD) using Zn4(OH)2(O2CCH3)6·2H2O as the solid source material and ZnNO3 as the doping source material. XPS, Hall-effect measurement and PL spectra were employed to analyze the structural, electrical and optical properties and study the influence of substrate temperature on the film. Results showed that with a lower substrate temperature, the film exhibited p-type conduction and its resistivity decreased when the substrete temperature increased. When the substrates temperature was 400℃, p-type ZnO films were obtained with carrier concentration of +5.127×10^17 cm^-3, resistivity of 0.04706 Ω· cm and Hall mobility of 259 cm^2/(V·s); they still exhibited p-type conduction after a month. When the substrate temperature was too high, the film was transformed from p-type to n-type conduction.  相似文献   

15.
We prepared Fe3O4 nanoparticles using chemical coprecipitation and studied the factors affecting the magnetic characteristics of nano-Fe3O4 particles.We identified four factors and three levels of an orthogonal experiment and investigated these four factors that affect the magnetic characteristics of the Fe3O4 particles.We obtained important information from this investigation.The Fe3+ to Fe2+ molar ratio,the iron precursor salt,the amount of surfactant and the amount of alkali were found to be important.We also studied the influence of the order of alkali and surfactant addition,the aging time and the stirring speed on the magnetic characteristics of the nano-Fe3O4 particles.The Fe3O4 preparation process was also analyzed.  相似文献   

16.
A general strategy has been developed here to supramolecular self-assembly of nickel (Ⅱ)-substituted α-Keggin-type polyoxometalate and polyaniline coated Fe2O3 hollow nanospindle (Fe2O3 hollow nanospindle@PANI/α-SiW11Ni composites) via electrostatic attraction and hydrothermal method. Fe3+ was first hydrolyzed and polymerized into Fe2O3, then dissolved into [Fe(H2PO4)x]3?x, resulting in hollow structure. The polyoxometalate existed in polyaniline as a proton-doped counter-ion form, rather than as a separate crystalline state. The protons and anions entered the PANI main chain and combined with N atoms of amines and imines on the PANI chain ((-NH?+ ?= ?)/α-[SiW11Ni(H2O)O39]6-) to form poles and bipolar delocalization into π bonds of the whole polyaniline molecular chain, which leaded to conductance and polarization. The Fe2O3 hollow nanospindle@PANI/α-SiW11Ni composites were proven to be excellent microwave absorber in terms of reflection loss (RL) and bandwidth. The maximum RL value was up to ?53.6 ?dB at 3.5 ?mm and 6.9 ?GHz. The broadest absorption bandwidth exceeding ?10 dB was 6.3 ?GHz at a thickness of only 1.9 ?mm. Moreover, the ternary composites presented obvious multi-band absorption with the matching thickness range of 1.5–5 ?mm. The absorption peaks bandwidth reached as wide as 14.3 ?GHz, which included all C-Ku bands. The hollow and core-shell structures could provide non-uniform interface for the induced polarization loss and space for the reflecting and scattering of microwave. The carrier, pair-ion carrier and hydrogen bond network could lead to conduction loss. The magnetic losses were caused by eddy current effect and natural resonance. This work can lay a theoretical foundation for the design and performance regulation of new absorbing materials.  相似文献   

17.
Diamond-like carbon (DLC) films with different thickness were deposited by filtered cathode vacuum arc (FCVA). Vis-Raman and spectroscopic ellipsometry were employed to analyze the structure of DLC films. The wavelength of Vis-Raman is 514.5 nm. Experimental results show that structures of DLC films are affected by film thicknesses. When the film thickness increases from 2 to 30 nm, the G-peak position (G-pos) shifts to higher wavelength, the intensity ratio ID/IG and the extinction coefficient Ks decrease. It is indicated that the content of sp3 bond increases with film thickness. However, when the film thickness increases from 30 nm to 50 nm, ID/IG and Ks increase. The content of sp3 bonds decreases with film thickness.  相似文献   

18.
用晶体场理论研究了LiTaO3:Fe^3+(Mn^2+)的EPR参量D和掺杂晶体局域结构间的内在联系,计算值与实验值符合较好。结果表明,LiTaO3:Mn^2+局域结构的畸变程度大于LiTaO3:Fe^3+。  相似文献   

19.
从无铁渣湿法炼锌流程还原补锰液中萃取铟   总被引:4,自引:0,他引:4  
考察了P204对Fe2+,Mn2+,Zn2+及In3+的硫酸盐模拟溶液中各种金属离子的萃取性能,然后对真实溶液无铁渣湿法炼锌流程中高酸浸出液的还原补锰液中的铟进行萃取分离.确定了萃取分离铟的最佳条件为:(ⅰ)有机相组成分为30%P204+70%磺化煤油;(ⅱ)温度20 ℃±;(ⅲ)级数3级;(ⅳ)相比O/A=3∶1;(ⅴ)时间5 min,在最佳条件下,铟的萃取率≥99.4%,P204对In3+,Zn2+,Mn2+ 3种金属的萃取饱和容量分别为54.0 g·L-1,22.0 g·L-1和2.0 g·L-1,全流程铟的直收率达到77.58%,总回收率≥95.0%,比传统提取铟流程回收率提高20%以上.  相似文献   

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