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1.
采用溶胶凝胶法制备了V2O5-TiO2复合半导体材料,通过Raman、XRD及UV-Vis DRS等实验方法研究了V2O5与TiO2复合对材料表面组成、晶体结构以及光响应性能的影响。结果表明:钒加入后优先与TiO2作用形成较为稳定的金红石型TiVO4晶相,其中V4+是促进TiO2发生相变的关键;随着钒加入量的增加,V2O5由表面高分散状态逐渐聚集形成晶相,并释放部分Ti4+使之形成锐钛矿型TiO2晶相,使得体相中金红石型TiO2的含量有所下降;复合后形成的TiVO4晶相显著提高了材料对可见光的吸收率,并使其吸光域红移至460 nm左右。  相似文献   

2.
通过调节B2O3‐Bi2O3‐ZnO‐Al2O3(BBZA)玻璃的添加量研究其对钛酸钡(BaTiO3)陶瓷烧结条件、晶体结构和介电性能的影响。结果表明:添加适量的BBZA玻璃能够有效地将BaTiO3陶瓷烧结温度由1350℃降至950℃,并使其致密化。同时,添加BBZA玻璃后,BaTiO3的晶体结构随着烧结温度的升高而发生转变(立方相→四方相)。另外,BBZA玻璃的引入使BaTiO3陶瓷的居里峰得到了有效的抑制和拓宽。陶瓷微观形貌显示,玻璃相均匀分布在BaTiO3晶粒表面。优化的BaTiO3陶瓷制备条件如下:BBZA添加量(质量分数)为2.0%,烧结温度为950℃。在该条件下制备的BaTiO3陶瓷介电常数达到1364,介电损耗低至1.2%。  相似文献   

3.
用质量比为3∶2的YSZ-γ-Al2O3和CeO2-Y2O3-ZrO2的混合物(以YSZA+CYZ表示)作载体, 制备了不同Co3O4含量的整体式甲烷燃烧催化剂, 同时制备了分别以YSZA和CYZ为载体的催化剂作为对比, 研究了它们老化前后的反应性能, 并用BET, XPS, XRD, TPR等研究了催化剂的比表面、表面状态、晶相结构和还原性能. 结果表明, YSZ- -Al2O3和CeO2-Y2O3-ZrO2混合载体能有效地抑制CoAl2O4的生成, 并能充分发挥各自的优点, 因此负载一定量的钴后表现出很高的甲烷催化燃烧活性和抗老化性, 尤其是含8 wt% Co3O4的样品性能最佳, 有望成为实用的甲烷燃烧催化剂之一.  相似文献   

4.
Mn2O3纳米结构的简易合成与电化学性质   总被引:1,自引:0,他引:1  
用简易的室温或水热方法制备出不同形貌的MnCO3微结构。经600 ℃热处理后,室温制备MnCO3转变成Mn2O3胶体片,而水热制备MnCO3样品则形成多孔Mn2O3纳米结构。然而,室温制备MnCO3经120 ℃热处理后形成Mn2O3晶相。制备样品经过XRD和SEM表征表明,热处理MnCO3前驱物形成Mn2O3过程导致产物形貌与结构变化。其形成机理又通过TEM和FTIR进一步研究。Mn2O3纳米结构的电容性质通过循环伏安法表征,结果表明Mn2O3形貌与结构对其电容有重要影响。  相似文献   

5.
采用高温熔融冷淬法制备了xCeO2·(100-x)CaO·100P2O5(x:0~12)玻璃固化体。利用XRD、Raman、FTIR和DSC等方法表征了包容CeO2磷酸钙玻璃固化体的结构特点和析晶性能。结果表明,玻璃固化体微观结构属于偏磷酸盐玻璃。CeO2未改变玻璃的基本结构,位于磷酸钙玻璃网络空隙中,起网络修饰作用。添加量小于6mol%时,易形成均质玻璃,在此范围内,随着CeO2含量增加玻璃固化体的热稳定性和抗析晶能力提高,玻璃的熔化温度降低。CeO2添加量为6mol%时,玻璃的热稳定性最好。添加量9mol%~12mol%时,CeO2与磷酸钙玻璃基体反应生成独居石结构晶相。  相似文献   

6.
以磷铁废渣(Fe1.5P)和温室效应气体CO2为原料,以磷酸为补充磷源合成磷酸铁锂(LiFePO4)的前驱体Fe2P2O7,并研究了其合成过程对LiFePO4正极材料储能性能的影响。采用SEM观察了LiFePO4的表面形貌,采用XRD分析了LiFePO4和Fe2P2O7的晶体结构。进一步对该方法进行优化,发现Fe1.5P与磷酸混合物(nFe1.5PnH3PO4=1:1)在800℃热处理6 h合成的Fe2P2O7对应的LiFePO4/C电化学性能最好,在0.1C,0.2C,0.5C和1C倍率下的容量分别可达130,126,117和108 mAh·g-1。  相似文献   

7.
LiMn2O4表面包覆Li4Ti5O12的制备及倍率特性   总被引:1,自引:0,他引:1       下载免费PDF全文
采用固相法合成了尖晶石型LiMn2O4,并通过溶胶-凝胶法制备了不同物质的量的百分比含量Li4Ti5O12包覆的正极材料。X-射线衍射和扫描电镜结果表明,Li4Ti5O12微粒包覆在LiMn2O4的表面没有产生晶体结构的变化。实验电池在室温下,以1C,2C和5C倍率作充放电循环测试;结果表明,与未包覆的LiMn2O4相比,表面包覆Li4Ti5O12微粒的正极材料在高倍率下具有更好的循环稳定性。  相似文献   

8.
刘利  崔文权  邱发礼 《化学学报》2010,68(3):211-216
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   

9.
采用柠檬酸凝胶法两步热处理工艺制备了单相Ba2Ti9O20。干凝胶在750 ℃热处理得到了物相为BaTi5O11和Ba4Ti13O30、尺寸为30~50 nm的前驱体粉体。纳米前驱体具有高表面活性,促使单相Ba2Ti9O20在1 200 ℃热处理温度下形成。两步热处理所得的粉体比一步热处理所得的粉体具有更好的烧结和介电特性,两步热处理所得的粉体,在1 250 ℃烧结4 h,可获得理论密度为97%的Ba2Ti9O20微波介质陶瓷,其介电性能:εr=38.5,Qf=19 320 GHz,τf=8.7×10-6-1。  相似文献   

10.
以磷铁废渣(Fe1.5P)和温室效应气体CO2为原料,以磷酸为补充磷源合成磷酸铁锂(LiFePO4)的前驱体Fe2P2O7,并研究了其合成过程对LiFePO4正极材料储能性能的影响。采用SEM观察了LiFePO4的表面形貌,采用XRD分析了LiFePO4和Fe2P2O7的晶体结构。进一步对该方法进行优化,发现Fe1.5P与磷酸混合物(nFe1.5PnH3PO4=1:1)在800℃热处理6 h合成的Fe2P2O7对应的LiFePO4/C电化学性能最好,在0.1C,0.2C,0.5C和1C倍率下的容量分别可达130,126,117和108 mAh·g-1。该方法具有成本低廉,减少碳排放和环境友好等特点,为LiFePO4正极材料的生产提出了一种新的工艺。  相似文献   

11.
The crystallization mechanism of a high-strength lithium disilicate glass-ceramic in the SiO(2)-Li(2)O-P(2)O(5)-Al(2)O(3)-K(2)O-(ZrO(2)) system, used as restorative dentistry material, has been examined on the basis of quantitative (29)Si magic angle spinning (MAS) and (29)Si{(7)Li} rotational echo double resonance (REDOR) NMR spectroscopy. Crystallization occurs in two stages: near 650 °C a significant fraction of the Q(3) units disproportionates into crystalline Li(2)SiO(3) and Q(4) units. Upon further annealing of this glass-ceramic to 850 °C the crystalline Li(2)SiO(3) phase reacts with the Q(4) units of the softened residual glass matrix, resulting in the crystallization of Li(2)Si(2)O(5). The NMR experiments provide detailed insight into the spatial distribution of the lithium ions suggesting the absence of lithium ion clustering in the residual glassy component of the final glass-ceramic. (31)P MAS-NMR spectra indicate that phosphate acts as a lithium ion scavenger, resulting in the predominant formation of orthophosphate (P(0)) and some pyrophosphate (P(1)) groups. Crystallization of Li(2)SiO(3) occurs concomitantly with the formation of a highly disordered Li(3)PO(4) phase as evidenced from strong linebroadening effects in the (31)P MAS-NMR spectra. Well-crystallized Li(3)PO(4) is only formed at annealing conditions resulting in the formation of crystalline lithium disilicate. These results argue against an epitaxial nucleation process previously proposed in the literature and rather suggest that the nucleation of both lithium metasilicate and lithium disilicate starts at the phase boundary between the disordered lithium phosphate phase and the glass matrix.  相似文献   

12.
In this paper dry reforming of methane (DRM) was carried out over nanocrystalline MgAl2O4-supported Ni catalysts with various Ni loadings. Nanocrystalline MgAl2O4 spinel with high specific surface area was synthesized by a co-precipitation method with the addition of pluronic P123 triblock copolymer as surfactant, and employed as catalyst support. The prepared samples were characterized by X-ray diffraction (XRD), N2 adsorption, H2 chemisorption, temperature-programmed reduction (TPR), temperature-programmed oxidation (TPO), temperature- programmed desorption (TPD) and transmission and scanning electron microscopies (TEM, SEM) techniques. The obtained results showed that the catalyst support has a nanocrystalline structure (crystal size: about 5 nm) with a high specific surface area (175 m2 g-1) and a mesoporous structure. Increasing in nickel content decreased the specific surface area and nickel dispersion. The prepared catalysts showed high catalytic activity and stability during the reaction. SEM analysis revealed that whisker type carbon deposited over the spent catalysts and increasing in nickel loading increased the amount of deposited carbon. The nickel catalyst with 7 wt% of nickel showed the highest catalytic activity.  相似文献   

13.
Emergence of phases in lithium aluminum silicate (LAS) glasses of composition (wt%) xLi2O-71.7SiO2-(17.7−x)Al2O3-4.9K2O-3.2B2O3-2.5P2O5 (5.1≤x≤12.6) upon heat treatment were studied. 29Si, 27Al, 31P and 11B MAS-NMR were employed for structural characterization of both LAS glasses and glass-ceramics. In glass samples, Al is found in tetrahedral coordination, while P exists mainly in the form of orthophosphate units. B exists as BO3 and BO4 units. 27Al NMR spectra show no change with crystallization, ruling out the presence of any Al containing phase. Contrary to X-ray diffraction studies carried out, 11B (high field 18.8 T) and 29Si NMR spectra clearly indicate the unexpected crystallization of a borosilicate phase (Li,K)BSi2O6, whose structure is similar to the aluminosilicate virgilite. Also, lithium disilicate (Li2Si2O5), lithium metasilicate (Li2SiO3) and quartz (SiO2) were identified in the 29Si NMR spectra of the glass-ceramics. 31P NMR spectra of the glass-ceramics revealed the presence of Li3PO4 and a mixed phase (Li,K)3PO4 at low alkali concentrations.  相似文献   

14.
Chemical looping combustion (CLC) of carbonaceous compounds has been proposed, in the past decade, as an efficient method for CO2 capture without cost of extra energy penalties. The technique involves the use of a metal oxide as an oxygen carrier that transfers oxygen from combustion air to fuels. The combustion is carried out in a two-step process: in the fuel reactor, the fuel is oxidized by a metal oxide, and in the air reactor, the reduced metal is oxidized back to the original phase. The use of iron oxide as an oxygen carrier has been investigated in this article. Particles composed of 80 wt% Fe2O3, together with Al2O3 as binder, have been prepared by impregnation methods. X-ray diffraction (XRD) analysis reveals that Fe2O3 does not interact with the Al2O3 binder after multi-cycles. The reactivity of the oxygen carrier particles has been studied in twenty-cycle reduction-oxidation tests in a thermal gravimetrical analysis (TGA) reactor. The components in the outlet gas have been analyzed. It has been observed that about 85% of CH4 converted to CO2 and H2O during most of the reduction periods. The oxygen carrier has kept quite a high reactivity in the twenty-cycle reactions. In the first twenty reaction cycles, the reaction rates became slightly higher with the number of cyclic reactions increasing, which was confirmed by the scanning electron microscopy (SEM) test results. The SEM analysis revealed that the pore size inside the particle had been enlarged by the thermal stress during the reaction, which was favorable for diffusion of the gaseous reactants into the particles. The experimental results suggested that the Fe2O3/Al2O3 oxygen carrier was a promising candidate for a CLC system.  相似文献   

15.
Fluoroapatite containing glass-ceramics were prepared from Li2O-CaO-CaF2-P2O5-SiO2 system. The glass was melted at 1480°C for 1 h. The object of observation was the preparing crystal phase of fluoroapatite in amorphous glass matrix. The morphology of lithium disilicate glass-ceramics was studied by SEM. The crystal growth and thermal properties of fluoroapatite were studied by X-ray diffraction and DTA. The more the content of P2O5, the more the presence of fluoroapatite particles. SEM investigation clearly indicated the phase separation and formation of a primary crystalline phase of fluoroapatite in the studied glass-ceramics. DTA curves of the fluoroapatite samples exhibit exothermic effects in the temperature range 337-694°C depending on the composition of the materials. The position of exothermic peak for lithium disilicate on DTA curves moves with increasing specific surfacetowards lower temperatures which points on its preferential surface crystallization. As far as physical qualities are concerned, mainly color and gloss, the best qualities of all observed materials belong to glass-ceramics with 10% P2O5. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

16.
Mg(OH)2•2MgSO4•2H2O晶体的水热生长过程   总被引:1,自引:0,他引:1  
对MgSO4-NaOH-H2O四元交互体系在160 ℃水热条件下,相同物料配比,不同反应时间的晶体生长过程进行了研究,得到5Mg(OH)2•MgSO4•2H2O(简称MOS)晶须和Mg(OH)2•2MgSO4•2H2O棒状晶体两种硫氧镁化合物.通过化学分析、X-ray粉末衍射、FT-IR光谱和SEM对反应产物进行了表征.前者是该体系水热条件下介稳产物,而新的硫氧镁化合物Mg(OH)2•2MgSO4•2H2O是该体系的稳定相.  相似文献   

17.
Lithium aluminum silicate (LAS) glass of composition (mol%) 20.4Li2O-4.0Al2O3-68.6SiO2-3.0K2O-2.6B2O3-0.5P2O5-0.9TiO2 was prepared by melt quenching. The glass was then nucleated and crystallized based on differential thermal analysis (DTA) data and was characterized by 29Si, 31P, 11B and 27Al MAS-NMR. XRD and 29Si NMR showed that lithium metasilicate (Li2SiO3) is the first phase to c form followed by cristobalite (SiO2) and lithium disilicate (Li2Si2O5). 29Si MAS-NMR revealed a change in the network structure already for the glasses nucleated at 550 °C. Since crystalline Li3PO4, as observed by 31P MAS-NMR, forms concurrently with the silicate phases, we conclude that crystalline Li3PO4 does not act as a nucleating agent for lithium silicate phases. Moreover, 31P NMR indicates the formation of M-PO4 (M=B, Al or Ti) complexes. The presence of BO3 and BO4 structural units in all the glass/glass-ceramic samples is revealed through 11B MAS-NMR. B remains in the residual glass and the crystallization of silicate phases causes a reduction in the number of alkali ions available for charge compensation. As a result, the number of trigonally coordinated B (BO3) increases at the expense of tetrahedrally coordinated B (BO4). The 27Al MAS-NMR spectra indicate the presence of tetrahedrally coordinated Al species, which are only slightly perturbed by the crystallization.  相似文献   

18.
采用溶胶-凝胶法制备CaO-P2O5-SiO2-Na2O-B2O3体系前驱体粉末,用CaF2替代部分CaO再次制备前驱体粉末。 通过TG-DSC分析确定结晶温度为865 ℃,经过热处理获得主晶相为Na6Ca3Si6O18的玻璃陶瓷。 通过X射线衍射(XRD)、傅里叶红外光谱(FTIR)、扫描电子显微镜(SEM)等技术手段及体外生物活性实验分析玻璃陶瓷的显微结构及性能。 结果表明,CaF2的加入能提高玻璃陶瓷的体积密度、抗折强度和弹性模量,并且不会破坏玻璃陶瓷的生物活性。  相似文献   

19.
采用传统熔体冷却法制备了Li3-xAl2-xGex(PO4)3(x=1.1~1.9)体系玻璃,并通过热处理工艺获得了高电导率的微晶玻璃。通过XRD、TEM和交流阻抗等测试方法,研究了该系微晶玻璃的物相组成、微观形貌和锂离子电导率。结果表明:该系统微晶玻璃析出导电主晶相为LiGe2(PO4)3,杂质相为AlPO4和GeO2。当x=1.5时,由于导电主晶相LiGe2(PO4)3晶粒充分长大、分布均匀,所制备微晶玻璃的室温锂离子电导率最高(5.72×10-4 S.cm-1),可以满足全固态锂离子电池对电解质高室温电导率的要求。  相似文献   

20.
采用固相燃烧法制备了单晶多面体尖晶石型LiMn1.94B0.06O4正极材料,利用X射线衍射(XRD)、扫描电镜(SEM)、透射电镜(TEM)以及充放电测试等手段,对其晶体结构和电化学性能等进行了表征。结果表明,B掺杂没有改变尖晶石型LiMn2O4的晶体结构,促进了(440)和(400)晶面的优先生长,形成了高暴露的(111)晶面及少部分(110)和(100)晶面的单晶多面体LiMn1.94B0.06O4晶粒,减少了Mn的溶解和提供了更多的锂离子扩散通道,其晶粒尺寸在160~350 nm之间。在10C、25℃的条件下,LiMn1.94B0.06O4电极的首次放电比容量可达到103.0 mAh·g^-1,2000次循环后,表现出较好的容量保持率(57.7%);在15C高倍率下,LiMn1.94B0.06O4仍然保持了67.1 mAh·g^-1的首次放电比容量,1500次循环后,仍能维持46.2%的容量保持率;在1C、55℃的条件下,其初始放电比容量高达125.2 mAh·g^-1,表现出良好的高温性能。B掺杂能够有效提高尖晶石型LiMn2O4的高倍率性能和循环寿命,稳定晶体结构,抑制Jahn?Teller效应和缓解Mn的溶解。  相似文献   

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