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1.
不锈钢基底上TiO2薄膜型光催化剂的制备和化学结构   总被引:23,自引:0,他引:23  
朱永法  张利  王莉  付艳  曹立礼 《化学学报》2000,58(4):467-472
采用钛酸正丁酯作为前驱体,通过溶胶-凝胶法在不锈钢基片上制备了TiO2纳米薄膜。利用俄歇电子能谱(AES)和紫外反射光谱等研究手段,对TIO2薄膜的化学结构及基底材料界面相互作用进行了系统研究。结果发现,在不锈钢基底上形成的TiO2薄膜与基底材料发生了明显的界面扩散反应。在TiO2薄膜的形成过程中,不锈钢中Fe元素向TiO2薄膜层扩散,并与从大气氛中扩散到界面的氧发生化学反应,形成铁氧化物界面过渡层。界面氧化过程,导致了Fe向样品表面的偏析和扩散。在高温热处理过程中,Fe可以扩散到TiO2薄膜的表面。薄膜催化剂的紫外反射光谱表明,界面扩散反应导致了Fe扩散进入TiO2薄膜的晶格,从而改变了薄膜催化剂的光吸收性能。  相似文献   

2.
"钛/TiO2氧化膜/溶液"界面电极体系的电化学性能主要决定于钛表面的TiO2氧化物膜.本文利用多种电化学技术,结合半导体物理的Mott-Schottky分析和Einstein方程,研究了金属钛在1.0mol·L-1HClO4溶液中表面半导体TiO2氧化膜的生长及氧化膜中氧空位点缺陷在外加电场作用下的传输性能,并根据离子性电荷传输与电子性电荷传输对电场变化响应时间之不同特点,确定氧化膜中点缺陷扩散系数.结果表明,电极电位或阳极析氧反应对稳态电流(iss)、氧化膜的阳极化常数(α)、膜中电场强度()、以及膜中氧空位点缺陷的扩散系数(D0)等重要物理化学参数,均有显著影响,并依据氧化膜中的结构变化进行分析.  相似文献   

3.
利用紫外激光拉曼(UV-Raman)光谱表征了担载TiO2或ZrO2表面的钒氧化物催化剂的分子结构,采用原位UV-Raman光谱考察了V4/TiO2和V4/ZrO2催化剂对柴油炭黑催化燃烧的真实反应状态.结果表明:随着反应温度的升高,TiO2发生了从锐钛矿相到金红石相的晶相转移;然而,ZrO2载体没有观察到明显的相转移过程发生.担载钒氧化物的结构也与钒的载量有关,当钒的载量m(m是每100个载体金属离子中所含的钒离子数)等于4时,钒氧化物在TiO2或ZrO2载体上达到了单层饱和分散,此时催化剂的氧化还原能力最强.所以,在TiO2或ZrO2担载的钒氧化物催化剂中,V4/TiO2和V4/ZrO2是各自系列催化剂中对炭黑燃烧活性最高的催化剂.在炭黑的催化燃烧过程中,原位UV-Raman光谱检测到表面含氧络合物(SOC)的形成,而且SOC主要以羧基功能团的形态存在.反应气体中NO的存在能够促进SOC的生成.  相似文献   

4.
金刚石颗粒表面Cr金属化及薄膜间界面扩散反应的研究   总被引:6,自引:0,他引:6  
运用直流磁控溅射法可在金刚石颗粒表面沉积150nm的金属Cr层.在超高真空条件下,经300-600℃的热退火处理,可促进Cr膜与金刚石基底间的界面扩散和反应.利用俄歇电子能谱研究了Cr/金刚石颗粒界面的结合状态,发现Cr与金刚石薄膜发生了强烈的界面扩散,Cr元素渗入金刚石层达90nm,并在界面上发生化学反应形成Cr的碳化物层.对界面扩散反应动力学的研究表明,Cr/金刚石界面扩散反应的表观活化能为38.4kJ/mol,界面扩散反应主要由碳的扩散过程控制.热处理温度越高,界面扩散及反应越显著,但不利于碳化物层生成的氧化反应速度也会有所增加,界面反应产物从Cr2C3转变为Cr2C物种.延长热处理时间有利于金属碳化物的生成,同样导致界面反应产物从Cr2C3转变为Cr2C物种.  相似文献   

5.
本文采用TPR、TPO技术分别考察了氧处理Pt/TiO_2上氧物种的还原行为和氢还原样品的氧化过程.TPR结果表明,表面含有活泼氧物种的Pt/TiO_2样品对氢很活泼,室温条件下可以吸附大量氢,并且这些吸附氢又可以在TPR过程中脱附.表面活泼氧物种与氢的反应温度在500—673K之间,当大于673K时,Pt/TiO_2继续耗氢,可能是氢与还原产生的表面Ti~(3+)离子进一步反应生成钛—氢物种,并向TiO_2体相扩散与TiO_2体相晶格氧发生反应.对于773K还原的Pt/TiO_2作品,室温吸附氧在TPD过程中可以与表面吸附氢反应;473K氧化处理可以消除表面的吸附氢,但并不能完全去除体相储氢;573K氧化处理则基本上恢复了原样品的氧化状态.不同温度氢还原处理的Pt/TiO_2样品在动态氧化过程(TPO)中,在300-600K温区,气相氧与样品上表面吸附氢和表面氧空位反应;在大于600K温区,氧主要与表面钛—氢物种发生反应,并向体相扩散,与体相氢发生反应.文中描述了气相氢、氧分别与Pt/TiO_2催化剂存在的氧或氢物种作用的形式.  相似文献   

6.
利用紫外激光拉曼(UV-Raman)光谱表征了担载TiO2或ZrO2表面的钒氧化物催化剂的分子结构,采用原位UV—Raman光谱考察了V4/TiO2和V4/ZrO2催化剂对柴油炭黑催化燃烧的真实反应状态.结果表明:随着反应温度的升高,TiO2发生了从锐钛矿相到金红石相的晶相转移;然而,ZrO2载体没有观察到明显的相转移过程发生.担载钒氧化物的结构也与钒的载量有关,当钒的载量m(m是每100个载体金属离子中所含的钒离子数)等于4时,钒氧化物在TiO2或ZrO2载体上达到了单层饱和分散,此时催化剂的氧化还原能力最强.所以,在TiO2或ZrO2担载的钒氧化物催化剂中,V4/TiO2和V4/ZrO2是各自系列催化剂中对炭黑燃烧活性最高的催化剂.在炭黑的催化燃烧过程中,原位UV—Raman光谱检测到表面含氧络合物(SOC)的形成,而且SOC主要以羧基功能团的形态存在.反应气体中NO的存在能够促进SOC的生成.  相似文献   

7.
TS-1分子筛是以TO4(T=Si,Ti)四面体为基本单元,通过氧桥连接而形成的具有MFI拓扑结构的微孔晶体材料,其在催化烯烃环氧化、酮类氨肟化、氧化脱硫及芳香烃羟基化等氧化反应中表现出较好的催化活性.目前,提高TS-1分子筛催化性能的方法主要包括:(1)制备纳米和多级孔TS-1分子筛,以提高其扩散传质性能;(2)提高TS-1分子筛的钛含量并抑制锐钛矿相的产生,以增加其催化活性位点.最新研究表明,相比于传统四配位钛物种(TiO4)作为催化活性中心,六配位(TiO6)钛物种在烯烃环氧化反应中具有更高的催化活性,可进一步降低反应活化能,最终实现高效催化转化.然而,TiO6物种结构中的Ti-OH组分,易导致开环反应发生,从而降低环氧化产物的选择性.因此,构筑高活性TiO6物种及调变TiO4/TiO6比例,对提高烯烃转化率及环氧产物选择性具有重要意义.当前,高活性钛物种的结构表征及其构筑已成为研究热点且仍面临挑战.本文协同采用氨基酸辅助合成策略和两步晶化方法,成功地制备出具有TiO4和TiO6物种且无锐钛矿相的多级孔TS-1分子筛.在该协同策略中,两步晶化过程有利于抑制锐钛矿相的形成,而氨基酸的引入对高活性TiO6物种的构筑具有重要作用.氨基酸分子可与钛原料形成螯合物,为TS-1分子筛晶化提供"养料",并有效平衡晶体成核与生长速率及稳定TiO6物种,最终实现制备富含TiO6物种的多级孔TS-1分子筛.相比于传统TiO4物种作为催化活性中心(1-己烯的转化率<25%,环氧化产物选择性>95%),本文所制备的TS-1分子筛(Si/Ti=36.9)因其兼具TiO4和TiO6物种,在1-己烯环氧化反应中表现出更好的催化性能(1-己烯的转化率33%,环氧化产物选择性95%).这是由于TiO4物种不会导致开环反应的发生,因此可以保证较高的环氧产物选择性,而TiO6物种经H2O2活化后,可形成具有更高活性及更小位阻效应的催化中心,极大提高了1-己烯转化率.综上,本文合成策略为构筑具有高活性钛物种及多级孔结构的钛硅分子筛提供了指导作用,为调控硅铝酸盐及硅取代磷酸铝分子筛材料活性位点的含量和分布提供了新思路.  相似文献   

8.
光催化可实现污染物降解、分解水制氢和CO2还原等多种氧化还原反应, 因而受到了广泛关注. 光催化材料中光生电荷的数目与氧化还原能力直接影响光催化反应效率, 在许多光催化反应中, 光生空穴氧化反应被认为速控步骤. 以光催化分解水为例, 质子的还原是单电子过程, 水氧化产生氧气则涉及四个电子. 空穴的高能量不仅可赋予其高的氧化能力,还能提高其迁出表面的能力, 因此具有重要研究价值.我们组的前期工作表明, 以TiB2作为前驱体, 采用水热合成和焙烧两步法可制备出间隙硼掺杂的金红石相或锐钛矿相TiO2, 间隙硼掺杂可显著降低价带顶, 提升光催化氧化水产氧性能. 然而, 在已有的结果中, 间隙硼掺杂浓度在TiO2中均呈现从内向外逐渐增加的梯度分布, 这意味着硼掺杂浓度有限, 且表层更低的价带顶不利于体相光生空穴向表面迁移, 因此亟需实现TiO2中均相的间隙硼掺杂.本文以湿化的氩气为水解环境, 将水解过程限域在TiB2的表面以减少硼原子流失; 同时提高水解温度, 使残留的硼原子形成间隙掺杂, 避免其在二次焙烧时扩散, 从而在TiB2核的表面所形成的TiO2壳层中实现均相间隙硼掺杂, 显著提高了光催化氧化水产氧活性. 多种表征结果表明, 直径约为6-10 μm的TiB2核表面形成了厚约400 nm的TiO2壳层, 在TiO2/TiB2中TiO2壳层重量比约为30%, TiO2壳层中锐钛矿相TiO2占比为65 wt%, 金红石相TiO2占比为35 wt%. TiO2壳层中间隙硼为均相分布, 硼掺杂显著降低了价带顶位置, 提高了光生空穴的氧化能力, 从而使得TiB2/TiO2展现出比未掺杂的金红石、锐钛矿相及两者混合相的TiO2均具有更高的光催化氧化水产氧的能力.  相似文献   

9.
钛酸丁酯与乙酐的反应和产物钛氧有机化合物结构分析   总被引:1,自引:1,他引:1  
钛酸丁酯与乙酐在环己烷中混合加热反应,钛酸丁酯中的烷氧基容易发生二取代反应,生成溶于有机溶剂的丁氧基乙酸钛[Ti(OC4H9)2(OOCCH3)2]和乙酸丁酯;在过量的乙酐存在下,二取代产物形成两种不同结构的钛氧有机物,乙酸氧钛[TiO(OOCCH3)2]和丁氧基乙酸氧钛[Ti2O(OC4H9)2(OOCCH3)4],两种物质分子中都存在Ti-O-Ti键型的结构,它们不溶于有机溶剂.Ti2O(OC4H9)2(OOCCH3)4更容易加热分解.  相似文献   

10.
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   

11.
Journal of Solid State Electrochemistry - The Ti/TiO2 + ZrO2, Ti/TiO2 + CeOx, and Ti/TiO2 + CeOx + ZrO2 composites, including Y-doped ones, have been...  相似文献   

12.
UV-Raman spectroscopy was used to study the molecular structures of TiO2 or ZrO2-supported vana-dium oxide catalysts.The real time reaction status of soot combustion over these catalysts was de-tected by in-situ UV-Raman spectroscopy.The results indicate that TiO2 undergoes a crystalline phase transformation from anatase to rutile phase with the increasing of reaction temperature.However,no obvious phase transformation process is observed for ZrO2 support.The structures of supported va-nadium oxides also depend on the V loading.The vanadium oxide species supported on TiO2 or ZrO2 attain monolayer saturation when V loading is equal to 4(4 is the number of V atoms per 100 support metal ions).Interestingly,this loading ratio(V4/TiO2 and V4/ZrO2) gave the best catalytic activities for soot combustion reaction on both supports(TiO2 and ZrO2).The formation of surface oxygen com-plexes(SOC) is verified by in-situ UV Raman spectroscopy and the SOC mainly exist as carboxyl groups during soot combustion.The presence of NO in the reaction gas stream can promote the pro-duction of SOC.  相似文献   

13.
 TiO2-ZrO2复合氧化物具有比TiO2和ZrO2更高的比表面积、更好的热稳定性和更强的表面酸碱性,作为催化剂载体已引起很大的研究兴趣并得到了重要的应用. 本文主要介绍了TiO2-ZrO2复合氧化物载体的制备方法以及织构、结构和表面酸碱性等物化性质,并对其在催化反应中的应用进行了综述.  相似文献   

14.
氧化钛纳米管阵列制备及形成机理   总被引:34,自引:0,他引:34  
采用电化学阳极氧化法在HF水溶液体系使纯钛表面形成一层结构规整有序的高密度TiO2纳米管阵列,考察了几种主要的实验参数(阳极氧化电压、温度、时间、电解液浓度)对TiO2纳米管阵列形貌和尺寸的影响.结果表明,阳极氧化电压是影响氧化钛形貌和纳米管尺寸的最主要因素,而温度和电解液浓度只影响TiO2纳米管阵列形成的时间.对TiO2纳米管阵列进行X射线衍射(XRD)和扫描电子显微镜(SEM)的分析,初步表征了TiO2纳米管阵列的电学性质.并讨论了TiO2纳米管的形成机理.  相似文献   

15.
Photocatalytic oxidation of propylene with molecular oxygen at room temperature was investigated over various silica-supported metal oxides with low loading. The photocatalytic active site is assumed to be the isolated tetrahedrally coordinated metal oxides in the ligand-to-metal charge-transferred state, such as (Mdelta- -OLdelta+). Photocatalytic epoxidation of propylene into propylene oxide was promoted over silica-supported V and Ti oxides at steady state. Over silica-supported Cr oxide, the propylene oxide formation rate was remarkably decreased with the time course in the reaction. The oxidation state and the coordination environment of the supported Ti, V, and Cr oxide species were determined by diffuse reflectance UV-vis spectroscopy (DRS) and electron spin resonance (ESR). During the photocatalytic oxidation, the oxidation state of the Ti4+ species was not varied. On the other hand, the V5+ species was partially reduced to V4+ and the Cr6+ species was successively reduced to Cr5+ and Cr3+. An isotopic tracer study of the C3H6-18O2 reaction suggests the difference of the active oxygen species between TiO2/SiO2 and V2O5/SiO2. The active oxygen species on TiO2/SiO2 is derived from molecular oxygen. On the other hand, the photogenerated products on V2O5/SiO2 incorporate the lattice oxygen of the surface metal oxide species. It is suggested that the kinds of terminal ligand (hydroxyl or oxo) of the tetrahedrally coordinated metal oxides on silica decide the active oxygen species in the photocatalytic oxidation. A photoinduced hole center on the monohydroxyl (SiO)3Ti-OH species activates molecular oxygen that reacts with propylene. In the case of the monooxo (SiO)3V=O and dioxo (SiO)2Cr=O2 species, the photoactivated lattice oxygen (OL-) directly reacts with propylene.  相似文献   

16.
Highly crystalline and surface-modified Zr-doped TiO(2) nanorods were successfully prepared using a nonhydrolytic sol-gel method that involves the condensation of metal halides with alkoxides in anhydrous trioctylphosphine oxide (TOPO) at either 320 or 400 degrees C. In addition, the interaction of the cross-condensation between the Ti and Zr species was studied by characterizing the morphologies, crystalline structures, chemical compositions, surface properties, and band gaps of the nanocrystals obtained at different reaction temperatures and Zr-to-Ti stoichiometric ratios. Increases in the concentration of Zr(4+) and in the reaction temperature led to large nanorods and regular shapes, respectively. In addition, only the anatase form was observed in the Zr-doped TiO(2) nanorods. The Zr-to-Ti ratios obtained ranged from 0.01 to 2.05, all of which were far below the stoichiometric ratios used during the preparation of the samples (0.25-4). Moreover, the Zr(4+) units accumulated mainly at the surface of the TiO(2) nanocrystals. The band gaps of the Zr-doped TiO(2) nanorods ranged from 2.8 to 3.8 eV, which are smaller than those of pure TiO(2) (3.7 eV) or ZrO(2) (5.2 eV). The Zr-doped anatase TiO(2) nanorods prepared at 400 degrees C at an initial stoichiometric Zr-to-Ti ratio of 2:3 exhibited the highest photoactivities for the decomposition of rhodamine B because of the presence of trace amounts of Zr(4+) (Zr/Ti = 0.03) in the TiO(2) and the regular shapes of these particles. DSC analysis indicated that the temperatures for forming nanocrystalline TiO(2) and ZrO(2) were 207 and 340 degrees C, respectively. Moreover, the reactivities of condensation between the Ti species were reduced when Zr species were involved in the NHSG reactions. The results obtained in this study clearly demonstrate that the faster kinetics for the generation of TiO(2) controls the material properties as well as the photoactivities of the nonhydrolytic sol-gel-derived nanocrystals.  相似文献   

17.
We report that SWCNTs substantially improve the uniformity and coverage of TiO2 coatings on porous ZrO2 ceramic membrane filters. The ZrO2 filters were dip coated with 100 nm anatase TiO2, TiO2/SWCNT composites, a TiO2+SWCNT mixture, and a TiO2/MWCNT composite at pH 3, 5, and 8. Whereas the TiO2+SWCNT mixture and the TiO2/MWCNT composite promote better coverage and less clumping than TiO2 alone, the TiO2/SWCNT composite forms a complete uniform coating without cracking at pH 5 ( approximately 100% coverage). A combination of chemical and electrostatic effects between TiO2 and SWCNTs forming the composite as well as between the composite and the ZrO2 surface explains these observations.  相似文献   

18.
Cu/ZrO2-Al2O3上表面氧物种脱附及其对催化性能的影响   总被引:1,自引:0,他引:1  
采用XRD,TPD-MS和TPR方法研究了ZrO2的改性对CuO/γ-Al2O3催化剂上铜物种人散状态,表面氧物种的脱附和恢复性能,铜物种还原再氧行为的影响,并CO氧化反应为探针考察了催化剂的氧化活性,结果表明,ZrO2的存在的铜物种在γ-Al2O3载体上的分散容量降低,促进CuO/γ-Al2O3催化剂上表面氧物种的脱附,同时有效地促进铜物种的还原,从而增加CO的氧化活性,实验还发现热处理条件对催  相似文献   

19.
A series of Ce-doped MnOx/TiO2 catalysts were prepared by impregnation method and used for catalytic oxidation of NO in the presence of excess O2. The sample with the Ce doping concentration of Ce/Mn=1/3 and calcined at 300°C shows a superior activity for NO oxidation to NO2. On Ce(1)Mn(3)Ti catalyst, 58% NO conversion was obtained at 200°C and 85% NO conversion at 250°C with a GHSV of 41000 h-1, which was much higher than that over MnOx/TiO2 catalyst (48% at 250°C). Characterization results implied that the higher activity of Ce(1)Mn(3)Ti could be attributed to the enrichment of well-dispersed MnOx on the surface and the abundance of Mn3+ and Ti3+ species. The addition of Ce into MnOx/TiO2 could improve oxygen storage capacity and facilitate oxygen mobility of the catalyst as shown by PL and ESR, so that its activity for NO oxidation could be enhanced. The effect of H2O and SO2 on the catalyst activity was also investigated.  相似文献   

20.
Composition of nanostructured metal particles on oxide tubes (TiO2 and ZrO2) were fabricated and characterized. The composite materials were examined by transmission electron microscopy, scanning electron microscopy, FT-IR absorption, and UV-visible absorption spectra. The results of characterization showed that the composites indeed contained both oxide tubes and gold nanoparticles and that the gold nanoparticles were intimately associated with the nanotubes.  相似文献   

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