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1.
以P123(聚环氧乙烷-聚环氧丙烷-聚环氧乙烷三嵌段共聚物)为模板剂,Ce(NO_3)_3为反应原料,通过考察加热方式、加热温度、原料配比等因素,合成了结构性能较好、表面羟基含量较高的介孔CeO_2材料。利用XRD,N_2吸附-脱附,TEM,Raman,FT-IR等技术对合成样品的结构性能进行了表征,结果表明,当P123与Ce(NO_3)_3物质的量之比为1∶10,在110℃水热下合成的CeO_2结构性能最好。以酸性橙7(AO7)为探针分子,对合成介孔CeO_2的光催化性能进行评价。光催化结果证明,由于表面羟基含量较高、介孔及氧缺位的形成,所合成结构性能较好的CeO_2,利用可见光可彻底催化降解溶液中的AO7。  相似文献   

2.
研究了低于300 ℃时两种氧化铈对稀燃阶段NOx存储性能的影响,催化剂由2%(w)Pt/Al2O3(PA)与CeO2-X(X=S,I)机械混合制备. X射线衍射(XRD),BET表面积和扫描电子显微镜(SEM)用于表征材料的物理结构. X射线光电子能谱(XPS)和H2程序升温还原(H2-TPR)用于表面Ce3+和活性氧定量. 原位漫反射傅里叶变换红外光谱(in-situ DRIFTS)用于分析表面NOx吸附物种. 相比于CeO2-I,CeO2-S 具有优良的物理化学性能,包括高比表面积、丰富的空隙结构、较高的抗老化能力及表面Ce3+浓度. 因而,Pt/Al2O3+CeO2-S 表现出优异的NOx存储能力. 此外,PA+CeO2-X(X=S,I)上存在Pt 与CeO2之间的相互作用,可提高表面氧物种的活性进而促进NO氧化及NOx存储. PA+CeO2-S上的这种相互作用要强于PA+CeO2-I. 研究表明,表面Ce3+浓度和活性氧含量对NOx存储起到重要作用. 然而经过水热处理后,Pt 与老化的氧化铈(ACS,ACI)之间的相互作用降低,并且两种氧化铈NOx存储性能显著下降. 另外,与PA+ACS(ACI)相比,PA+PACS(PACI)样品NOx存储能力得到改善,这归因于表面氧物种活性增加能促进硝酸盐的形成.  相似文献   

3.
采用溶剂热法合成了不同Fe掺杂含量的Fe-CeO2纳米粉体及不同氮源掺杂的N-10% Fe-CeO2nFe/(nFe+nCe)=10%)纳米粉体。利用TEM、XRD、XPS、Raman和UV-Vis等技术对其微观结构与形貌进行了表征,并通过降解亚甲基蓝溶液对其光催化性能进行了研究。结果表明,Fe掺杂可以提高CeO2的光催化性能,以10% Fe-CeO2催化效率最高,对亚甲基蓝的降解率从纯CeO2的67%提高到95%。而N的掺杂可调节10% Fe-CeO2催化性能。以浓氨水为氮源的N-10% Fe-CeO2(NH3·H2O-N-10% Fe-CeO2)的降解率可进一步提高到97%,并且具有较好的稳定性,经5次循环使用,对亚甲基蓝的光催化降解率仍高达89%。CeO2催化活性的提高主要由于掺杂Fe和N改变了CeO2的晶体结构与能带结构,促进了光生电子与空穴的产生与催化反应。  相似文献   

4.
高琳心  蒋新  郭森 《物理化学学报》2001,30(7):1303-1308
采用吸附相反应技术制备得到了MnOx/CeO2/SiO2催化剂,通过X 射线衍射(XRD)、透射电子显微镜(TEM)、高分辨透射电子显微镜(HRTEM)、紫外激光拉曼(Raman)等手段对催化剂进行了表征. HRTEM分析表明活性组分MnOx与CeO2都均匀分布在载体SiO2表面;XRD分析表明Mn3O4特征峰随着CeO2含量的增加逐渐减小至完全消失,CeO2的加入降低了MnOx的结晶程度,增加了MnOx的分散性;Raman光谱表明催化剂表面的Mn离子能够进入CeO2晶格,激发出空穴氧,随着CeO2负载量的增加,催化剂氧空穴浓度先升高后降低.以NH3为还原剂,考评催化剂的NOx低温选择性催化还原(SCR)性能,催化剂催化活性随CeO2负载量增加先升高后降低,与催化剂氧空穴浓度变化规律一致,说明催化剂活性受氧空穴浓度影响,氧空穴浓度升高,催化剂催化活性升高.  相似文献   

5.
以酵母菌为生物模板辅助沉淀法制备了CeO2空心微球。采用傅里叶转换红外光谱(FT-IR)、X射线衍射(XRD)、X射线光电子能谱(XPS)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和氮气吸附-脱附等对样品进行了表征,结果表明,在600 ℃煅烧后得到了CeO2空心微球,其形态与酵母菌一致为椭球体,球壳是由大小约为25 nm的CeO2纳米颗粒组成,比表面积为22 m2·g-1,远大于未用模板制备的CeO2微粒的比表面积。通过紫外-可见漫反射测定,得到CeO2空心微球的禁带宽度为3.03 eV,相比于相同条件下合成的无模板CeO2禁带宽度(3.42 eV)明显减小。室温下用模拟太阳光照射降解酸性橙7(AO 7)对样品的光催化性能进行了测试,结果表明,在照射120 min之后降解率能达到96%以上,降解效果明显高于未使用模板的CeO2微粒。对CeO2空心微球的形成机理进行了分析。  相似文献   

6.
在CeO2-ZrO2中加入La2O3对改善单Pd三效催化剂性能的作用   总被引:5,自引:0,他引:5  
浸渍法制备了CeO2-ZrO2-La2O3复合氧化物,用XRD、热分析(TG-DTA,DSC)、BET表面积、H2-TPR等对合成样品进行表征,研究了La2O3的加入对CeO2-ZrO2和单钯Pd/CeO2-ZrO2/γ-Al2O3/蜂窝陶瓷催化剂性能和热稳定性的影响。结果表明,在CeO2-ZrO2-La2O3中,La的存在能促进CeO2-ZrO2固溶体的还原,提高贮氧能力;在Pd/CeO2-ZrO2/γ-Al2O3中加入La有利于提高催化剂的耐热稳定性,阻止γ-Al2O3在高温下的晶相转变,进一步稳定Al2O3的结构,保持其高的表面积。在贵金属Pd的负载量为1 g·L-1的条件下,测定了Pd/CeO2-ZrO2-La2O3/γ-Al2O3/蜂窝陶瓷催化剂对CO、C3H8和NOx的三效催化净化活性。结果表明,在Pd/CeO2-ZrO2/Al2O3/蜂窝陶瓷催化剂中加入La2O3后,能明显地改善催化剂的低温活性和三效催化性能,经1 000 ℃老化10 h后,CO、C3H8和NOx净化的起燃温度(T50)分别为330 ℃、350 ℃和380 ℃。  相似文献   

7.
离子交换-双氧水氧化法制备纳米CeO2晶体   总被引:6,自引:0,他引:6       下载免费PDF全文
以99.995% Ce(NO3)3和强碱性阴离子交换树脂为原料,采用离子交换-双氧水氧化法合成制备出纳米CeO2晶体。并就离子交换反应中的Ce3+浓度、树脂加入速度和离子交换温度及H2O2加入速度等条件对CeO2粒径的影响进行了探讨,得出了离子交换-双氧水氧化法制备纳米CeO2晶体的最佳工艺条件。FTIR、TEM分析表明,离子交换法无需对合成的Ce(OH)3溶胶进行洗涤即可去除NO3-、CO32-等阴离子杂质,并用H2O2将该溶胶氧化,经真空干燥可制得粒径分布均匀,平均晶粒尺寸约3 nm,高纯度的CeO2粉体。  相似文献   

8.
以三嵌段化合物P123为模板剂、正硅酸乙酯(TEOS)为无机硅源合成了有序介孔分子筛SBA-15. 选择Tb(DBM)3phen为客体, 纳米级介孔分子筛为主体, 在氯仿中进行分子组装, 制备具有强发光性能的超分子纳米复合材料Tb(DBM)3phen/APTES-SBA-15. 采用XRD, HRTEM, N2吸附/脱附, FTIR和荧光光谱分析等对复合材料的结构与性能进行了研究.  相似文献   

9.
陈文  刘琦  赵春霞  周静 《化学学报》2006,64(19):1969-1973
以三嵌段化合物P123为模板剂、正硅酸乙酯(TEOS)为无机硅源合成了有序介孔分子筛SBA-15. 选择Tb(DBM)3phen为客体, 纳米级介孔分子筛为主体, 在氯仿中进行分子组装, 制备具有强发光性能的超分子纳米复合材料Tb(DBM)3phen/APTES-SBA-15. 采用XRD, HRTEM, N2吸附/脱附, FTIR和荧光光谱分析等对复合材料的结构与性能进行了研究.  相似文献   

10.
张茜  梁海欧  李春萍  白杰 《化学通报》2022,85(12):1475-1482
以三聚氰胺,硝酸铈等为原料,通过高温煅烧法制备了不同CeO2含量的片层状的g-C3N4/CeO2,通过XRD, FT-IR,XPS,UV-Vis DRS等对系列g-C3N4-CeO2材料进行了表征,考察了材料在可见光下(λ≥420nm)条件下降解盐酸四环素(TC)的光催化活性。与单纯的g-C3N4相比,g-C3N4/CeO2-30%具有更优异的光催化性能,这是由于g-C3N4-CeO2间的异质结作用促进了光生电子和空穴分离,同时复合材料增大的比表面积可以提供更多的反应位点。自由基捕获实验证实了.O2-在催化反应过程中起到主要作用,并提出了相应的光催化机理。  相似文献   

11.
Alkali and ammonium cobalt and zinc phosphates show extensive polymorphism. Thermal behavior, relative stabilities, and enthalpies of formation of KCoPO4, RbCoPO4, NH4CoPO4, and NH4ZnPO4 polymorphs are studied by differential scanning calorimetry, high-temperature oxide melt solution calorimetry, and acid solution calorimetry.α-KCoPO4 and γ-KCoPO4 are very similar in enthalpy. γ-KCoPO4 slowly transforms to α-KCoPO4 near 673 K. The high-temperature phase, β-KCoPO4, is 5-7 kJ mol−1 higher in enthalpy than α-KCoPO4 and γ-KCoPO4. HEX phases of NH4CoPO4 and NH4ZnPO4 are about 3 kJ mol−1 lower in enthalpy than the corresponding ABW phases. There is a strong relationship between enthalpy of formation from oxides and acid-base interaction for cobalt and zinc phosphates and also for aluminosilicates with related frameworks. Cobalt and zinc phosphates exhibit similar trends in enthalpies of formation from oxides as aluminosilicates, but their enthalpies of formation from oxides are more exothermic because of their stronger acid-base interactions. Enthalpies of formation from ammonia and oxides of NH4CoPO4 and NH4ZnPO4 are similar, reflecting the similar basicity of CoO and ZnO.  相似文献   

12.
Reactivity of mixtures of La(III) oxide and Cu(II) oxalate/nitrate in hydrated as well as anhydrous state was studied using TG, DTA and XRD. Cu(II) oxide formed in the endothermic decomposition of mixture containing hydrated Cu(II) nitrate and La(III) oxide could not form La2CuO4 while Cu(II) oxide formed in the exothermic decomposition of mixture containing hydrated/anhydrous Cu(II) oxalate and La(III) oxide reacts with La(III) oxide and develops the phases CuLaO3 and La2CuO4. The maximum reactivity with respect to the formation of La2CuO4phase was observed in mixture containing anhydrous Cu(II) oxalate. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

13.
文章合成了Lu(NO3)3(C2H5O2N)4.H2O,用红外和元素分析对其进行了表征。用高精度全自动绝热量热仪,测定了该配合物80-382 K温区的热容, 利用实验热容数据, 根据热容与焓、熵的热力学关系, 求出了配合物85-350 K温区内每隔5 K相对于298.15K的标准热力学函数(HT - H298.15)m和(ST - S298.15)m.在80-350 K温度区间内,配合物的热容随温度升高而增大,没有相转移点和热力学吸收峰的出现,该配合物在此温度区间内是稳定存在的。  相似文献   

14.
La0.15Sr0.85Ga0.3Fe0.7O3-δ(LSGFO) and La0.15Sr0.85Co0.3Fe0.7O3-δ(LSCFO) mixed oxygen-ion and electron conducting oxides were synthesized by using a combined EDTA and citrate complexing method, and the corresponding dense membranes were fabricated. The properties of the oxide powders and membranes were characterized with combined SEM, XRD, H2-TPR, O2-TPD techniques, mechanical strength and oxygen permeation measurement. The results showed that LSGFO had much higher thermochemical stability than LSCFO due to the higher valence stability of Ga3+. After the temperature-programmed reduction by 5% H2 in Ar from 20℃to 1020℃, the basic perovskite structure of LSGFO was successfully preserved. LSGFO also favors the oxygen vacancy formation better than LSCFO. Oxygen permeation measurement demonstrated that LSGFO had higher oxygen permeation flux than LSCFO, but they had similar activation energy for oxygen transportation, with a value of 110 and 117 kJ ?mol~(-1), respectively. The difference in oxygen permeation f  相似文献   

15.
Microwave irradiation of a suspension of γ-MnOOH in a 4 mol dm−3 LiOH solution brought about a rapid formation of semicrystalline orthorhombic LiMnO2 (o-LiMnO2) within 30 min at 120°C. Cubic Li1.6Mn1.6O4 was obtained by heating o-LiMnO2 at 400°C; lithium could be topotactically extracted from Li1.6Mn1.6O4 with acid to form cubic H1.6Mn1.6O4.  相似文献   

16.
Sulfur/oxygen-bridged incomplete cubane-type triphenylphosphine molybdenum and tungsten-clusters [Mo3S4Cl4(H2O)2(PPh3)3]·3THF (1A), [Mo3S4Cl4(H2O)2(PPh3)3]·2THF (2A), [Mo3OS3Cl4(H2O)2(PPh3)3]·2THF (1B), and [W3S4Cl4(H2O)2(PPh3)3]·2THF (1C) were prepared from the corresponding aqua clusters and PPh3 in THF/MeOH. On recrystallization from THF, procedures with and without addition of hexane to the solution gave 1A and 2A, respectively, while the procedures gave no effect on the formation of 1B and 1C. Crystallographic results obtained are as follows: 1A: monoclinic, P21/n, a=17.141(4) Å, b=22.579(5) Å, c=19.069(4) Å, =96.18(2)°, V=7337(3) Å3, Z=4, R(R w)=0.078(0.102); 1C: monoclinic, P2 1/c, a=12.635(1) Å, b=20.216(4) Å, c=27.815(3) Å, =96.16(1)°, V=7062(2) Å3, Z=4, R(R w)=0.071(0.083). If the phenyl groups are ignored, the molecule [Mo3S4Cl4(H2O)2(PPh3)3] in 2A has idealized CS symmetry with the mirror plane perpendicular to the plane determined by the metal atoms, while the molecule in 1A does not have the symmetry. The tungsten compound 1C is isomorphous with the molybdenum compound 2A. 31P NMR spectra of 1A, 2A, and 1C were obtained and compared with similar clusters with dmpe (1,2-bis(dimethylphosphino)ethane) ligands.  相似文献   

17.
Fe-ZrO2 and Cu-ZrO2 xerogels were prepared by a sol-gel method. The effect of the hydrolysis catalyst during the gelation step, namely H2SO4 or NH4OH, on the properties of the resulting materials was investigated by XRD, BET, TGA/DTA, TPD of ammonia, FTIR, and TPR. Fe-ZrO2 and Cu-ZrO2 xerogels, with sulfuric acid introduced as the hydrolysis catalyst, mainly crystallyzed in the tetragonal phase and exhibited larger surface area and acid amount than those obtained with NH4OH. Ammonia TPD shows that copper promoted sulfated zirconia is the most acidic material. TGA and FTIR reveal that under oxidizing conditions sulfated zirconia promoted with iron and copper retains more sulfate species than unpromoted sulfated zirconia. Regardless of the hydrolysis catalyst employed, copper promoted catalysts calcined at 600°C, contain a large fraction of copper oxide specieseasily reduced at low temperatures. These copper oxide species are believed to have different environment and interactions with the surface oxygen vacancies of the zirconia support. A FeO-like phase appears to be the most probable one after reduction of Fe-ZrO2 catalysts prepared with NH4OH as the hydrolysis catalyst. The formation of Fe° species may be hindered by the high dispersion and interaction of Fe2+ ions with the zirconia support. On the other hand, the reduction peaks of iron oxide and sulfate species exhibit a considerable overlap in the TPR profiles of sulfated Fe-ZrO2 samples. Hence, the nature of the supported phase in the latter samples is rather uncertain.  相似文献   

18.
Fullerene hydrides were prepared by hydrogenation of fullerences C60 and C70 using proton transfer from 9,10-dihydroanthracene to fullerene and were studied by mass spectrometry (electron impact, field desorption), IR, UV, and1H and13C NMR spectroscopy. The main product of the hydrogenation of C60 is C60H36, which is sufficiently stable. Hydrogenation of fullerene C70 gives a series of polyhydrides C70H n (n=36–46), and the main product is C70H36. The dehydrogenation of C60H36 by 2,3-dichloro-5,6-dicyano-1,4-benzoquinone is not quantitative and results in the formation of fullerene derivatives along with C60. The comparison of the IR and1H and13C NMR spectral data for solid C60H36 with the theoretical calculations suggests that the fullerene hydride has aT-symmetric structure and contains four isolated benzenoid rings located at tetrahedral positions on the surface of the closed skeleton of the molecule. Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya. No. 4, pp. 671–678, April, 1997.  相似文献   

19.
采用XRD、N2吸附、 11B MAS NMR、NH3-TPD和催化性能评价等方法研究了B2O3/TiO2-ZrO2催化剂的结构、酸性及催化环己酮肟气相Beckmann重排反应性能间的关系。结果表明,催化剂中的B2O3同时以三配位的BO3和四配位的BO4结构单元存在;  相似文献   

20.
The solid-solid interactions between manganese and magnesium oxides in absence and in presence of small amounts of Li2O have been investigated. The molar ratios between manganese and magnesium oxides in the form of Mn2O3 and MgO were varied between 0.05:1 to 0.5:1. The mixed solids were calcined in air at 400-1000°C. The techniques employed were DTA, XRD and H2O2 decomposition at 20-40°C.The results obtained revealed that solid-solid interactions took place between the reacting solids at 600-1000°C yielding magnesium manganates (Mg2MnO4, Mg6MnO8, MgMnO4 besides unreacted portions of MgO, Mn2O3 and Mn3O4). Li2O-doping (0.75-6 mol%) of the investigated system followed by calcination at 600 and 800°C decreased progressively the intensity of the diffraction lines of Mn2O3 (Bixbyite) with subsequent increase in the lattice parameter 'a' of MgO to an extent proportional to the amount of Li2O added. This finding might suggest that the doping process enhanced the dissolution of Mn2O3 in MgO forming solid solution. This treatment led also to the formation of Li2MnO3. Furthermore, the doping with 3 and 6 mol% Li2O conducted at 800°C resulted in the conversion of Mn2O3 into Mn3O4, a process that took place at 1000°C in absence of Li2O. The produced Li2MnO3 phase remained stable by heating at up to 1000°C. Furthermore, Li2O doping of the investigated system at 400-1000°C resulted in a progressive measurable increase in the particle size of MgO.The catalytic activity measurements showed that the increase in the molar ratio of Mn2O3 in the samples precalcined at 400-800°C was accompanied by a significant increase in the catalytic activity of the treated solids. The maximum increase in the catalytic activity expressed as reaction rate constant measured at 20°C (k 20°C) attained 3.14, 2.67 and 3.25-fold for the solids precalcined at 400, 600 and 800°C, respectively. Li2O-doping of the samples having the formula 0.1 Mn2O3/MgO conducted at 400-600°C brought a progressive significant increase in its catalytic activity. The maximum increase in the value of k 20°C due to Li2O attained 1.93 and 2.75-fold for the samples preheated at 400 and 600°C, respectively and opposite effect was found for the doped samples preheated at 800°C.This revised version was published online in November 2005 with corrections to the Cover Date.  相似文献   

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