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1.
Fe3O4/TiO2磁性催化剂的制备及在污水治理中的应用   总被引:1,自引:1,他引:0  
宋海南 《分子催化》2011,25(6):557-562
以纳米Fe3O4为载体,以钛酸四丁酯为前躯体,用溶胶-凝胶法在Fe3O4表面包覆TiO2层,制备Fe3O4/TiO2光催化材料.透射电镜(TEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)和红外光谱(IR)分析表明,TiO2在纳米Fe3O4颗粒表面形成很好的包覆层.用Fe3O4/TiO2光催化材料对工业上难处理...  相似文献   

2.
纳米Mg-Al层状双氢氧化物表面包覆SiO2纳米膜的研究   总被引:2,自引:1,他引:2       下载免费PDF全文
采用溶胶-凝胶法在纳米Mg-Al层状双氢氧化物表面包覆SiO2纳米膜. 通过酸溶分析、透射电子显微镜、FT-IR、XRD、TG和DSC分析, 证实了在Mg-Al层状双氢氧化物表面包覆了一层连续致密的、厚约5 nm的SiO2纳米膜. 根据Al 2p, Mg 2p, Si 2s及O 1s的电子结合能的变化, 可推知在纳米Mg-Al层状双氢氧化物和SiO2纳米膜表面形成了Mg-O-Si和Al-O-Si键, 并据此分析了形成SiO2包覆膜的机理. 经热分析表明, SiO2包覆的纳米LDHs和纳米LDHs两者在40~700℃之间失重过程大致相同, 均出现了三个较为明显的质量损失阶段, 至700℃时包覆量越大的质量损失越少. 纳米LDHs在244.67和430.13℃有两个明显的吸热峰, 吸热值分别达412.28和336.30 J/g; 而包覆纳米LDHs只在243.60℃处出现一个较明显的吸热峰, 其吸热值为221.25 J/g.  相似文献   

3.
C(膜)/Si(SiO2 )(纳米微粒)/C(膜)热处理的形态及结构分析   总被引:1,自引:0,他引:1  
用直流辉光溅射+真空镀膜法制备了一种新型结构的硅基纳米发光材料- C(膜)/Si(SiO2)(纳米微粒)/C(膜)夹层膜,并对其进行了退火处理.用TEM、 SEM、 XRD和XPS对其进行了形态结构分析.TEM观察表明: Si(SiO2)纳米微粒基本呈球形,粒径在30 nm左右.SEM观察表明: 夹层膜样品总厚度约为50 μm,膜表面比较平整、致密.400℃退火后,样品表面变得凹凸不平,出现孔状结构; 650℃退火后,样品表面最平整、致密且颗粒均匀.XRD分析表明:制备出的夹层膜主要由SiO2和Si组成,在C原子的还原作用和氧气的氧化作用的共同作用下, SiO2和Si的含量随加热温度的升高而呈现交替变化: 400℃时, C的还原作用占主导地位, SiO2几乎全部被还原成了Si,此时Si含量最高; 400~650℃时,氧化作用占主导地位, Si又被氧化成SiO2, Si含量降低, SiO2含量逐渐上升,在650℃达到最高.XPS分析表明: 在加热过程中, C原子逐渐扩散进入Si(SiO2)微粒层,在650℃与Si反应生成了新的SiC.  相似文献   

4.
以四氯化钛为钛源,硫脲为硫源,采用液相水解-沉淀法制备了S掺杂的TiO2/SiO2(S-TiO2/SiO2)催化剂,并以苯酚为模型物,考察了催化剂在可见光区、紫外光区和太阳光下的光催化活性,以及催化剂的使用寿命和分离性能.采用X射线光电子能谱、傅里叶变换红外光谱、紫外-可见漫反射光谱、X射线衍射、透射电镜及N2吸附-脱附等技术对催化剂进行了表征.结果表明,S以+6价形式进入TiO2体相并置换晶格中的Ti4+,适量S掺杂的S-TiO2/SiO2在紫外光区、可见光区和太阳光下均表现出较高的光催化活性.SiO2与TiO2界面间有Ti-O-Si键形成,结合牢固.S掺杂在TiO2表面生成Ti-O-S键,形成新的能级结构,使光催化剂在450~550nm产生吸收,诱发TiO2可见光催化活性;同时提高了TiO2表面羟基数量.SiO2的加入可减小TiO2颗粒的平均尺寸,增大催化剂的比表面积,改善催化剂的分离性能,提高催化剂的使用寿命.  相似文献   

5.
采用溶胶-凝胶法制备高活性Ti基纳米TiO2-ZrO2膜电极.通过X射线衍射分析表明,纳米TiO2-ZrO2粉体呈微-纳二级结构.扫描电子显微镜测试表明,颗粒平均尺寸约为30 nm.通过循环伏安和恒电流电解技术研究发现,Ti/nanoTiO2-ZrO2电极对马来酸电催化还原制备丁二酸的活性要高于Ti/nanoTiO2电极,反应过程受扩散控制.以钛基氧化钌电极为阳极,Ti/nano TiO2-ZrO2膜电极为阴极进行恒电流电解实验.结果表明,控制电流密度20 mA cm-2,温度60℃,丁二酸的产率达到96%.  相似文献   

6.
陈垚翰  沈俊  张昭 《催化学报》2008,29(4):356-360
在不使用模板剂的条件下,以工业硫酸氧钛溶液为原料合成介孔偏钛酸前驱体,再经正硅酸乙酯浸渍焙烧制备了具有良好热稳定性的Si掺杂介孔SO2-4/TiO2.采用X射线衍射、N2吸附-脱附、扫描电镜、X射线能谱和傅里叶变换红外光谱等表征方法对样品的组成和结构进行了分析,并考察了该材料在亚甲基蓝氧化降解反应中的光催化性能.结果表明,在焙烧过程中,被吸附在偏钛酸孔道内的正硅酸乙酯发生水解,并与偏钛酸孔壁上的自由羟基形成 Ti - O - Si 键;Si进入二氧化钛骨架中,对孔结构起到了支撑作用,从而提高了介孔SO2-4/TiO2的热稳定性.700 ℃焙烧 2 h 后,Si掺杂介孔SO2-4/TiO2材料的比表面积仍达到189 m2/g,平均孔径为2.8 nm.400 ℃焙烧的样品在亚甲基蓝降解反应中表现出较好的光催化活性.  相似文献   

7.
以TiCl4为原料, 采用溶胶水解法合成了金红石型纳米TiO2颗粒, 并以其为载体制备了WC/TiO2纳米复合材料. 采用X射线衍射(XRD)、扫描电子显微镜(SEM)和X射线能谱(EDS)等手段分析了WC/TiO2纳米复合材料的晶相组成和表面形貌. 结果显示样品是由WC, TiO2和W组成, 纳米WC颗粒均匀地包覆在TiO2的表面, 并与TiO2构成了WC/TiO2纳米复合材料. 采用循环伏安法和计时电流法研究了WC/TiO2纳米复合材料对硝基苯的电催化性能. 结果表明, WC/TiO2纳米复合材料对硝基苯的电催化活性和电化学稳定性均优于介孔结构碳化钨(meso-WC)和纳米WC颗粒(part-WC).  相似文献   

8.
在分子尺度上介绍了Au/TiO2(110)模型催化剂表面和单晶Au表面CO氧化反应机理和活性位、以及H2O的作用.在低温(<320 K), H2O起着促进CO氧化的作用, CO氧化的活性位位于金纳米颗粒与TiO2载体界面(Auδ+–Oδ––Ti)的周边. O2和H2O在金纳米颗粒与TiO2载体界面边缘处反应形成OOH,而形成的OOH使O–O键活化,随后OOH与CO反应生成CO2.300 K时CO2的形成速率受限于O2压力与该反应机理相印证.相反,在高温(>320 K)下,因暴露于CO中而导致催化剂表面重组,在表面形成低配位金原子.低配位的金原子吸附O2,随后O2解离,并在金属金表面氧化CO.  相似文献   

9.
70 ℃下在钛酸四丁酯(TBOT)水热合成TiO2过程中, 加入油酸, 控制TiO2颗粒的生长方向, 无需热处理, 直接得到针状和纺锤形锐钛矿TiO2纳米晶. 应用透射电子显微镜、X 射线衍射仪对TiO2纳米晶进行了形貌观察和晶体结构的测定. 红外光谱分析表明, 油酸分子以静电作用吸附于针状TiO2纳米晶的表面. 根据UV-Vis吸收峰, 计算了TiO2纳米晶的禁带宽度. 纺锤形TiO2纳米晶具有较高的光催化活性, 60 min内催化降解了90%的罗丹明B.  相似文献   

10.
La3+-SiO2掺杂纳米TiO2的合成及其光催化降解甲基橙的研究   总被引:2,自引:1,他引:1  
以三嵌段非离子表面活性剂P123为模板,采用水热法合成了La3+-SiO2掺杂纳米TiO2,通过X射线衍射(XRD)、红外光谱(FT-IR)、紫外-可见漫反射吸收光谱(DRS)等手段,考察了La3+-SiO2掺杂纳米TiO2的结构与光学特性.实验结果表明,La3+和SiO2掺杂使TiO2的晶粒在生长过程中受到阻碍.Ti-O-Si键和Ti-O-La键的形成抑制了金红石相的形成和晶粒长大,提高了TiO2的热稳定性,有利于获得高纯度锐钛矿相纳米TiO2.La3+-SiO2掺杂将TiO2的光响应范围拓宽至可见光区,提高了纳米TiO2的光催化性能.与纯纳米TiO2相比,La3+-SiO2掺杂纳米TiO2光催化降解甲基橙的性能显著提高.  相似文献   

11.
TiO2表面包覆SiO2和Al2O3的机理和结构分析   总被引:54,自引:1,他引:53  
在二氧化钛的表面上包覆一层保护膜,使二氧化钛的表面和周围介质之间产生屏障,从而降低二氧化钛的光化学活性,有利于提高二氧化钛的分散性、耐光性、耐候性和抗粉化性.  相似文献   

12.
Since the layered double hydroxides (abbreviatedas LDHs) were firstly reported to be used as precur-sors of new catalytic materials by S. Miyata[1] in 1971,their preparations, ion-exchanges with the balancinginterlayer anions, structure characteristics an…  相似文献   

13.
氮和碳共掺杂TiO2纳米晶的制备及可见光催化性能   总被引:1,自引:0,他引:1  
以钛酸四丁酯为钛源, 冰醋酸为抑制剂, 超细铵盐为固体载体, 采用新型溶胶-凝胶法制备了氮和碳共掺杂TiO2纳米晶(N-C-TiO2) 光催化剂. 透射电子显微镜(TEM)结果表明, N-C-TiO2样品颗粒均匀, 尺寸细小, 且分散性好; 热失重分析(TGA)、 X射线粉末衍射(XRD)和X射线光电子能谱(XPS)研究结果表明, 复合干凝胶经低温热处理, 使铵盐载体分解、 挥发去除, 样品为单一的锐钛矿相, N和C原子扩散进入晶格结点或间隙位置, 与TiO2化学键结合; 氮气等温吸附-脱附结果表明, 样品比表面积高达356 m2/g, 孔体积为0.27 mL/g. 以氙灯为可见光光源, 罗丹明B水溶液为模拟污染物, P25为参比催化剂, 在辐射强度为100 mW/cm2的可见光照射条件下, N-C-TiO2具有很高的光催化活性, 其可见光催化活性明显高于P25.  相似文献   

14.
Rutile TiO2 particles made by flame spray pyrolysis (FSP) were coated in a single step with SiO2 layers in an enclosed flame reactor. This in situ particle coating was accomplished by a hollow ring delivering hexamethyldisiloxane (HMDSO) vapor (precursor to SiO2) through multiple jets in swirl cross-flow to Al-doped nanostructured rutile TiO2 aerosol freshly made by FSP of a solution of titanium tetraisopropoxide and aluminum sec-butoxide in xylene. The as-prepared powders were characterized by (scanning) transmission electron microscopy (STEM and TEM), energy dispersive X-ray analysis, X-ray diffraction, nitrogen adsorption, electrophoretic mobility, DC plasma optical emission (DCP-OES), and Fourier transform infrared (FT-IR) spectroscopy. The coating quality was assessed further by the photocatalytic oxidation of isopropyl alcohol to acetone. The effect of HMDSO injection point and vapor concentration on product particle morphology was investigated. The titania particles were uniformly SiO2-coated with controlled and uniform thickness at a production rate of about 30 g h(-1) and exhibited limited, if any, photoactivity. In contrast, spraying and combusting equivalent mixtures of the above Si/Al/Ti precursors in the above reactor (without delivering HMDSO through the hollow ring) resulted in particles segregated in amorphous (SiO2) and crystalline (TiO2) domains which exhibited high photocatalytic activity.  相似文献   

15.
Tin oxide-doped hybrid particles were prepared by a wet chemical process with organic-inorganic (phenyl/silica) hybrid particles in an alcoholic solution. The phenyl/silica hybrid particles, with a diameter of ca. 790 nm were used as a new support material for tin oxide (SnO2) particles from tin(IV) chloride. The surface of the particles was modified via nitration of aromatic groups in the particles, to promote formation of the tin oxide coating on the particles. The thickness and surface morphology of the tin oxide layer coated on the nitrated-phenyl/silica hybrid particles could be controlled by varying the tin(IV) chloride concentration and reaction time. The size and morphology of the resultant particles were investigated with field emission scanning electron microscopy (FE-SEM) and transmission electron microscopy (TEM). The particles obtained were also characterised by infrared (FTIR) and solid-state 13C magic angle spinning nuclear magnetic resonance (13C-CP/MAS NMR) spectroscopy. The effect of processing parameters on the crystallinity and structure of the doped hybrids were confirmed by X-ray diffraction (XRD) patterns.  相似文献   

16.
以钛酸四正丁酯、正硅酸乙酯、六水硝酸铈为原料, 在140 ℃下通过溶胶-凝胶-水热法水解制备Ce-Si/TiO2. 所得样品用X射线衍射、氮吸附、透射电镜、紫外漫反射、傅里叶变换红外光谱、X射线光电子能谱等测试手段分析, 结果显示400-600 ℃条件下焙烧所有样品均为锐钛矿, 样品具有较大的比表面积, Si和Ce均被引入到TiO2中. 在可见光照射下, 以脱色降解罗丹明B为探针反应, 研究其可见光催化性能, 结果表明, 与未掺杂和单一组分掺杂的二氧化钛相比较, 共掺杂的二氧化钛具有更高的催化性能, 当Ce/Ti和Si/Ti的物质的量比分别为0.010和0.10时,可见光催化性能最好.  相似文献   

17.
Au-TiO(2) interface on silica support was aimed to be produced in a controlled way by use of Au hydrosol. In method A, the Au colloids were modified by hydrolysis of the water-soluble Ti(IV) bis(ammoniumlactato)dihydroxide (TALH) precursor and then adsorbed on Aerosil SiO(2) surface. In method B, Au sol was first deposited onto the SiO(2) surface and then TALH was adsorbed on it. Regular and high-resolution transmission electron microscopy (TEM and HRTEM) and energy dispersive spectrometry (EDS) analysis allowed us to conclude that, in method A, gold particles were able to retain the precursor of TiO(2) at 1.5 wt % TiO(2) loading, but at 4 wt % TiO(2) content the promoter oxide appeared over the silica surface as well. With method B, titania was detected on silica at each TiO(2) concentration. In Au-TiO(2)/SiO(2) samples, the stability of Au particles against sintering was much higher than in Au/TiO(2). The formation of an active Au-TiO(2) perimeter was proven by the greatly increased CO oxidation activity compared to that of the reference Au/SiO(2).  相似文献   

18.
The present investigation reports TiO2 coating on magnesium alloy AZ31 by sol–gel method via dip coating technique. TiO2 coated surface was characterized by thin film X-ray diffraction (TF-XRD), Fourier transform infrared red (FT-IR) spectroscopy, scanning electron microscopy (SEM) with energy-dispersive X-ray (EDX) spectroscopy, atomic force microscopy (AFM) and transmission electron microscopy (TEM) techniques. From TF-XRD results, the peaks at 2θ values of 25.14, 32.12, 68.73 and 70.11 confirm the presence of TiO2. The TiO2 is crystalline in nature and the crystallite size is about 32.4 nm. SEM-EDX, TEM and AFM show that the coated surface is uniform and nanoporous. FT-IR analysis shows that the peak in the range of 692 cm?1 is assigned to Ti–O–Ti stretching vibration. Contact angle measurements show that the coating is hydrophilic in nature. Bioactivity of the coating in simulated body fluid (SBF) was also examined, the hydroxyl functionalized surface greatly enhances the hydroxyapatite growth. The potentiodynamic polarization studies prove that the corrosion resistance of the TiO2 coated surface after immersion in SBF for 7 days is improved dramatically. Cell adhesion studies confirm the increased cell attachment on TiO2 coated surface when compared to uncoated alloy, due to less amount of Mg ion release from the substrate in the culture medium.  相似文献   

19.
将氧化石墨烯(GO)掺入钛酸溶胶中,以导电玻璃(ITO)为基底,经浸渍-涂覆-煅烧得到GO/TiO2复合薄膜;采用电沉积技术在GO/TiO2薄膜表面沉积Se纳米微粒,得到Se/GO/TiO2复合薄膜;利用扫描电子显微镜和X射线衍射仪分析了复合薄膜的形貌和晶体结构,采用紫外可见光谱仪测定了其光谱学性质,利用光电转换实验测定了其光电转换性质.结果表明,所制备的Se/GO/TiO2复合薄膜各组分分布均匀,具有锐钛矿相结构的TiO2颗粒粒径为20nm,与TiO2结合的GO具有分散片层结构,薄膜中的Se颗粒粒径为60~80nm.与此同时,在Se和GO的共同作用下,Se/GO/TiO2复合薄膜对可见光有很好的光电转换效应.  相似文献   

20.
Zirconia nanoparticles were encapsulated by polyethylene via a polymerization compounding method using a Ziegler-Natta catalyst. The chemical reaction was carried out in an organic solvent under moderate pressure of ethylene monomer. Transmission electron microscopy (TEM) indicated the presence of a thin layer of polymer, about 6 nm, uniformly applied around the particles. However, the thickness of coating layer can be controlled as a function of time and operating conditions of the process. The morphology study using scanning electron microscopy (SEM) as well as TEM revealed that although the nanoparticles seem to be coated individually, some agglomerates, encapsulated by a polymer film, could be observed. The grafting of the catalyst to the original surface of particles was further confirmed by X-ray photoelectron spectroscopy (XPS).  相似文献   

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