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1.
SrTiO3 nanorods were synthesized in cetanyl trimethyl ammonium bromide (CTAB) reverse microemulsion containing CTAB, n-hexanol, n-octane and water with Ba(OH)2 as reactants. The effects of different conditions such as ω0 [ω0=nH2O/ nCTAB], aging time and the concentration of reactants on the formation of the nanorods were studied. Transmission electron microscope (TEM), electron diffraction (ED) and X-ray diffraction(XRD)were used to characterize the morphology and the structure of the synthesized nanorods. The results show that SrTiO3 nanorods with a length of 260~2 000 nm and a diameter of 50~100 nm belonging to single crystal are single cubic system. The molar ratio of Sr to Ti of products is 1.0 as determinded by ICP. 相似文献
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以静电纺丝技术制备的TiO_2纳米纤维为基质和反应物,结合一步水热法制得Gd-N共掺杂SrTiO_3/TiO_2复合纳米纤维光催化剂。利用X射线衍射(XRD)、扫描电子显微镜(SEM)、高分辨透射电镜(HRTEM)、X射线光电子能谱(XPS)、紫外-可见漫反射(UV-Vis DRS)和荧光光谱(PL)等方法对其微观结构、形貌和光学性能进行表征。结果表明:SrTiO_3和TiO_2形成异质结能够使光生电子和空穴得到很好的分离,而Gd-N共掺杂产生新带隙,可以拓宽光谱响应范围至可见光区,并引起晶格缺陷,成为光生电子-空穴对的浅势捕获阱。Gd-N共掺杂与异质结的协同作用有效提高了SrTiO_3/TiO_2复合纳米纤维的可见光催化活性。 相似文献
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Two ferrates, K2FeO4 and BaFeO4, had been prepared and characterized by XRD, IR and SEM. The electrochemical tests of the samples were carried out in the voltage range of 0.8~2.0 V and current density of 0.5~3.0 mA·cm-2. The results indicated that performance of Zn-BaFeO4 battery was superior to that of Zn-MnO2 and Zn-K2FeO4 batteries. Nanometer SrTiO3 prepared by Sol-gel methode with different ratio was added to the BaFeO4 cathode in order to improve the discharge performance. The discharge capacity of the BaFeO4 cathode was increased from 224 mAh·g-1 to 246 mAh·g-1 by addition of 5% nanometer SrTiO3. The reason of enhancing BaFeO4 electrochemical performance was discussed. 相似文献
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首先采用溶剂热法将1D TiO_2纳米带均匀地穿插到片层结构组装而成的3D ZnIn_2S_4微球中,所形成的异质结构能有效抑制光生电子-空穴对。其次利用光沉积法将0D Ag纳米粒子负载在3D ZnIn_2S_4/1D TiO_2异质结构上。得益于0D Ag纳米粒子的等离子体效应及电子助催化剂作用,三元3D ZnIn_2S_4/1D TiO_2/0D Ag复合光催化剂在分解水制氢方面表现出优异的性能。在模拟太阳光照射下,ZnIn_2S_4/TiO_2/Ag复合光催化剂的产氢速率达到715μmol·g~(-1)·h~(-1),相对于ZnIn_2S_4/TiO_2、ZnIn_2S_4/P25、ZnIn_2S_4、TiO_2和P25分别提高了2.7倍、3.3倍、3.8倍、184倍和518倍。同时借助于X射线衍射、扫描电子和透射电子显微镜、X射线光电子能谱和紫外可见漫反射光谱等表征手段进一步论证了复合催化剂的优异性能。 相似文献
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采用高温固相法合成了铈掺杂的K2La2Ti3O10催化剂, 利用X射线衍射(XRD)、紫外-可见漫反射(UV-vis DRS)、透射电镜(TEM)和X射线光电子能谱(XPS)对催化剂进行了表征. 考察了催化剂的可见光催化分解甲醇水溶液制氢的活性, 并对可见光催化机理进行了分析. 研究表明, 铈的掺杂没有改变K2La2Ti3O10的微晶结构, 并使催化剂粒径有所减小. 紫外可见漫反射分析表明禁带宽度为2.3 eV左右, 对可见光具有较高吸收. XPS表明La和Ti为+3和+4价, 而Ce则是+3和+4的混合价态. 担载2 wt% Pt后, 在可见光下光催化活性大大提高, 当铈的掺杂量为0.5 mol%(即Ce取代La的摩尔百分量)时, 光催化活性达到最大, 产氢速率为0.05 mmol/h; 光照5 h后产氢量为0.22 mmol, 而纯K2La2Ti3O10的产氢量只有0.037 mmol. 相似文献
6.
采用简单的化学偏聚法合成出Ag3PO4纳米颗粒、磷酸钴(Co3(PO4)2,CoP)纳米片以及它们两者的纳米复合结构(CoP/Ag3PO4),同时还比较了它们的可见光催化活性. 采用场发射扫描电镜(FESEM)、X 射线衍射(XRD)、紫外-可见(UV-Vis)吸收光谱以及光致发光谱等手段对其形貌、结构、光学以及可见光催化性能等进行表征. 结果表明,CoP/Ag3PO4复合纳米结构的可见光降解甲基橙(MO)的速率和循环稳定性均明显优于其它两种物质. 这表明CoP应该起着共催化剂的作用,它能够抑制光生电子与空穴之间的复合,并且提供大量高活性的光生空穴. 此外,我们还发现CoP/Ag3PO4降解另一种阳离子型染料——罗丹明B(RhB)的能力则远不如纯Ag3PO4,这可能是与光催化剂的表面性质发生改变有关,造成更低的RhB吸附能力. 本文提供了一种廉价制备高效可见光催化剂的新方法. 相似文献
7.
采用静电纺丝、水热和光沉积的方法制备了一种以Pt和NiS为助催化剂的BaTiO3/Pt/NiS双异质结光催化剂。优化后的BaTiO3/Pt/NiS样品的制氢速率最高为489 μmol·h-1·g-1,是纯物质BaTiO3的2.5倍。这主要归因于BaTiO3与Pt之间形成的肖特基结促进了光生电子的快速转移,以及BaTiO3与NiS之间构建的p-n结,实现了对光生空穴的高效捕获。光电化学测试结果进一步证实了BaTiO3/Pt/NiS异质结光催化剂中的光生电子和空穴被高效分离,从而具有更高的分解水制氢性能。 相似文献
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为了满足低温制备可见光光催化材料的需要,采用溶胶-凝胶法制备TiO2纳米晶溶胶,再与聚乙烯基吡咯烷酮(PVP)直接反应制备N掺杂TiO2可见光光催化剂。通过XPS分析,说明N取代了部分晶格中的O,UV-Vis漫反射吸收光谱显示,光催化剂具有明显的可见光响应,这是由于N原子的2p轨道位于O原子的2p轨道之上,从而使得价带和导带间的能量带隙变窄,引起吸收带红移,产生明显的可见光吸收。依靠亚甲基兰(MB)的可见光降解实验证明,N掺杂光催化剂具有良好的可见光光催化活性,16 h MB降解率接近25%。 相似文献
10.
以钼酸铵和C3N4为前驱体,利用浸渍法成功制备了高性能MoO3-C3N4复合光催化剂,利用X射线衍射(XRD)、傅里叶红外(FT-IR)、高分辨电镜(HRTEM)及N2吸附-脱附曲线等测试手段对所得MoO3-C3N4光催化剂进行了结构和形貌表征。以可见光下光催化降解甲基橙反应表征MoO3-C3N4的光催化活性。实验结果表明,MoO3-C3N4光催化剂具有非常好的光催化降解性能,且MoO3含量对反应活性产生显著影响。当MoO3含量为1.6%(w/w)时光催化活性最好,其速率常数达到C3N4的50倍。通过研究发现该复合催化剂的高活性来自于其Z型光生载流子传输过程,抑制了光生电子空穴对的复合并延长了引入MoO3产生的载流子的寿命。 相似文献
11.
First-principle calculations are performed to study the crystal structure, formation energies, and electronic structures of (0 0 1) SrTiO3 surfaces with/without Au covered. The initiative Au additive layer is crystallized in a fcc structure with (0 0 1) face on SrO-terminated surface. The bimodal growth trend of Au on TiO2-terminated surface is qualitatively consistent with the experimental observations. The defect structure of Au occupying the oxygen (O) vacancies of TiO2-terminated surface is energetically favorable under oxygen-poor conditions, and a feature corresponding to gap states appear and the occupied Ti 3d states disappear. 相似文献
12.
Pure TiO2 and La-doped TiO2 were prepared by the sol-gel method. Au was supported on TiO2 by the deposition-precipitation (DP) method, and its catalytic activity for CO oxidation was tested. The results showed that doping La in Au/TiO2 could improve its catalytic activity obviously for CO oxidation. The analyses of X-ray diffraction (XRD), temperature-programmed desorption (TPD), and Brunauer-Emmett-Teller (BET) surface area further showed that the presence of La in TiO2 not only increased its surface area and restrained the growth of TiO2 crystallites, but could also enhance the microstrain of TiO2. In terms of O2-TPD, a new adsorbed species O− appeared on the surface of La-doped TiO2. The results of in-situ Fourier transform-infrared (FT-IR) spectroscopy illustrated that the high activity of Au/La2O3-TiO2 was attributed to the presence of La promoting the reactivity of CO adsorbed on the Au site and the formation of the second active site on the surface of TiO2 相似文献
13.
Novel electrocatalysts Au/TiO2 nanotube arrays (Au/TiO2NTs) were prepared by loading low-content(1.9 at.%) of Au nanoparticles (AuNPs) onto highly ordered TiO2 nanotube arrays (TiO2NTs). Ethanol electrooxidation indicates that visible-light (λ > 400 nm) irradiation can significantly enhance the activity as well as resistpoisoning of Au/TiO2NTs electrocatalysts that are activated by plasmon resonance. Au/TiO2NTs catalysts calcinated at 300 °C display the highest performance due to the strong synergistic interactions between TiO2 and Au NPs. The combination of visible-light irradiation with a controllable potential offers a new strategyfor enhancing the performance of anodes in direct ethanol fuel cell (DEFC). 相似文献
14.
以水热法制备的Ta_2O_5纳米粒子为前驱体,利用高温氮化技术成功制备了核壳异质结构的Ta_3N_5@Ta_2O_5纳米光催化剂。采用XRD、XPS、TEM、N_2吸附-脱附测试、DRS及电化学测试等分析手段,考察了氮化温度和氮化时间对样品的表面组成、晶粒尺寸、晶面结构、能带结构及载流子分离效率的影响规律。在NH_3气流量50 mL·min~(-1)的条件下,当氮化温度为750℃,控制氮化时间能够对纳米Ta_2O_5样品的带隙结构在3.86~2.08 eV间有效调控,相应地样品逐渐从Ta_2O_5经TaON@Ta_2O_5转化为Ta_3N_5@Ta_2O_5;当氮化时间为3 h,氮化温度由750℃升高到900℃,Ta_3N_5@Ta_2O_5样品的带隙窄化至2.04 eV;当氮化温度为850℃,氮化时间延长至12 h,Ta_2O_5完全氮化为Ta_3N_5,带隙进一步窄化至2.02 eV。经850℃氮化3 h样品,壳层Ta_3N_5界面转化为高活性(110)晶面,光生载流子分离效率最大,在可见光(λ420 nm)照射下光解水析氢活性最高,达21.75μmol·g~(-1)·h~(-1)。 相似文献
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采用自组装单层膜技术,以三氯十八烷基硅烷(octadecyl-trichioro-silane,OTS)为模版,在玻璃基片上成功制备了钛酸锶晶态薄膜.改性基板的亲水性测定与金相显微镜测试表明,紫外光照射使基板由疏水转变为亲水,OTS单分子膜对薄膜的沉积具有诱导作用:X射线衍射(XRD)与扫描电镜(SEM)表征显示,制备成功的钛酸锶薄膜结晶良好,样品表面均匀,在垂直基板表面方向上呈花状生长:EDS能谱测试为钛酸锶薄膜的化学组成提供了有力的证据;同时探讨了白组装单层膜和钛酸锶薄膜的形成机理. 相似文献
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用溶胶-凝胶法制备了Au/Al2O3纳米复合薄膜。利用X-射线衍射、X-射线光电子能谱、原子力显微镜以及紫外-可见光谱对薄膜的微观结构、表面形貌及光学性能进行了表征,研究表明:Au/Al2O3纳米复合薄膜是由纳米微晶组成的颗粒膜, 复合薄膜均匀、致密、无裂纹,Au以纳米晶核形式镶嵌于Al2O3基体中,纳米Au晶核的粒径为23~26nm;复合薄膜在可见光区有较强的吸收,吸收峰位置与烧结温度有关,吸收强度随烧结温度和金添加量增大而增大。 相似文献