30 resultados para LA2-XSRXNIO4


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固体氧化物燃料电池(SOFC)被称为“二十一世纪的绿色能源”。氧化忆稳定氧化错(YSZ)是目前sOFC普遍采用的固体电解质材料。由于YSZ只有在高温时(大于1000℃)才具有较高的离子导电性,而SOFC在高温时会带来一系列技术性的问题,如机械强度的不稳定、材料的老化及各构成材料之间的相互扩散等。因此,迫切需要开发在中、低温范围内(600-800℃)具有较高离子电导率(大于10-2S.cm-l)的电解质材料。在众多的候选材料中,稀土作为基体和掺杂元素的固体电解质越来越引起人们的重视。特别是萤石型化合物CeOZ、钙钦矿型化合物LaGaO3,以及阴离子空位型化合物La2MO2O9等的研究,开阔了寻找固体电解质材料的视野。本论文主要研究稀土与钥复合氧化物的合成、结构及其电学性质,希望进一步提高现有材料的导电性能和寻找新型固体电解质材料。基于母体化合物La2Mo2O9在580℃左右有一个相变点,因为存在相变点的固体电解质在实用方面(如SOFC)有很大的局限性。我们从稀土掺杂的角度出发,对母体化合物进一步改性,稳定其高温结构相。为此,我们利用改性柠檬酸盐法合成了系列化合物La2-xRExMo2O9(RE=Ce,Pr,Nd,Sm,Gd,Tb,Dy,Ho,Er,Yb)。结果发现,只有Nd和Sm可以进入La2Mo2O9中La的格位;利用本方法合成样品的温度比用固相法低250℃左右;所合成的样品粒度分布非常均匀,并且随着Nd和Sm掺杂量的增加而变大;Nd和Sm的掺杂稳定了其高温相,电导率有所提高。从而使此类固体电解质在实用方面成为可能。合成了一种新型稀土与钥的复合氧化合物Ce6MoO15,电学性质测试发现,它是一性能优良的固体电解质材料。以此化合物为母体)进行低价金属离子的掺杂取代后发现,它们的导电性又进一步地提高,进而派生出多种固体电解质体系如Ce6-6 MoO15-δ、Ce6+x Mo1-x O15-6、Ce6Mo1-xBixO16-6以及Ce6-xAxMoO15-6。(A=Li,Ca,Sr和Ba)等。本研究工作中主要合成了Ce6-xRExMoO16-6(RE=Pr,Nd,Sm,Gd,Tb,Dy,Ho,Er,Yb;x=0.0-6.0)等系列化合物,并对其进行了结构表征及电学性质测试。结果发现所有样品均为类莹石结构;样品的导电性起源于氧离子空位;在相同的温度下,样品电导率相当于或高于经典的固体电解质(如YSZ),并且样品的抗老化性能有所提高。所有这些实验事实证明,它们在中温区是一种高效氧离子导体,从而为此类化合物在SOFC中的应用奠定了基础。通过合成AgScMo2O8,尝试了一种钥酸盐固溶体的合成方法,即钥酸盐水溶液合成法。这种方法不需要加入有机物(如柠檬酸等)作为络合剂,而是通过钼酸根与金属离子之间的酸碱对效应直接合成。我们对此化合物的结构、电学性质进行研究后发现:此化合物在较低的温度即已完全成相;室温下,Agsco208为单斜结构,不同于AgLnMo2O8(Ln=Y-Lu);随着温度的升高,AgscMo2o8在485℃、539℃附近各有一个不可逆,可逆相变点出现。在可逆相变点出现的同时,伴随着其电导率有一个很大的突跃。

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Active site structure for NO decomposition carried out on perovskite-like oxides were discussed based on the N-2 yield measured from LaSrNi1-x,AlxO4 with different B-site cations and from La2-ySryCuO4 with different crystal phases. Results show that the active site contains two oxygen vacancies, two transition metals, and one lattice-oxygen, with the oxygen vacancy locating on the apex of MO6 octahedron, and the lattice oxygen locating between the two transition metals (i.e., M-O-M plane). Density functional theory (DFT) analysis to the structure shows that this new active site is the most active structure for NO adsorbing, and hence, for NO decomposition. The similar trend of the relative energies that are required for the formation of oxygen vacancies with f form (calculated from DFT), the amount of oxygen vacancies, and the activities (N-2 yield) certifies this result further.

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A series of W-type ferrites with the composition of Ba1-xLaxCo2Fe16O27 (where, x = 0.0, 0.05, 0.10, 0.15, 020 and 0.25) were prepared by solid-state reaction method. The structure transformations of the ferrites were examined by XRD, DTA-TG and XPS, and the microwave-absorbing properties were investigated by evaluating the permeability and permittivity of materials (mu(r), epsilon(r)). The results showed that the phase-transition temperature increased with the addition of La2+ content, and a single-phase was formed at 1250 degrees C at last. Microwave properties were obviously improved as a result of the substitution of La3+ for Ba2+ at the frequency range of 0.5 similar to 18.0 GHz.

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CH4 and CO oxidation reaction on perovskite-like oxides La2-xSrxMO4 (0.01 <= x <= 1.0; M = Cu, Ni) was investigated from cyclic voltammetry method, finding that for suprafacial CO oxidation reaction, the catalyst activity has a close correlation to the area of redox peaks measured in the cyclic voltammetry, the larger the peak area is, the higher the activity will be, while for interfacial CH4 oxidation reaction, the activity depends mainly on the difference in redox potentials (Delta E), and the smaller the difference in redox potentials is, the higher the activity will be.

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A new ionic conductor La2-xNdxMo2O9 (x=0.0-2.0) has been synthesized by wet-chemistry method. The precursors and the resultant oxide powders were characterized by DTA/TG, DSC, XRD and XPS techniques. Effect of substituting Nd for La reveals that the phase transition which occurs in La2Mo2O9 around 565degreesC disappears when x>0.2. And the maximum amount of Nd stabilized the high temperature phase of beta-La2Mo2O9 from cubic to tetragonal is about x=1.6. The measurements of impedance spectroscopy indicate that the ionic conductivity becomes considerably higher in comparison to that of La2Mo2O9.

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本文报道了SrAl2 B2 O7:Dy3+、BaAl2 B2 O7:Dy3+、SrAl3BO7:Dy3+、La2 CaB10 O19:Dy3+的紫外-真空紫外 (UV—VUV)激发光谱和UV激发下的发射光谱。根据发射光谱讨论了Dy3+离子在这几种基质中发光的黄蓝比 (Y/B)。在VUV激发光谱中推测了Dy3+的f-d跃迁及电荷迁移态(CTS)和基质吸收的位置

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磷酸盐是一类十分稳定的晶体化合物 ,易形成 P— O键的多酸根聚合体[1 ] ,以直键或环状排列 ,它们能与稀土离子形成稳定的化合物。作为稀土发光材料的基质 ,具有吸收能力强、转换效率高、物理化学性质稳定、能承受大功率的电子束和高能射线等优点 ,在光致发光 [2 ] 、电致发光[3] 、阴极射线发光 [4 ] 和X射线发光 [5] 等方面获得了广泛的应用。近年来 ,关于稀土焦磷酸盐的合成已有不少的报道。常用的方法是高温固相法 [6 ] ,用此方法合成的样品虽然亮度高 ,但纯度较低 ,粒度不均匀 ,所以探索合成稀土焦磷酸盐的新方法十分有必要。本文采用液相法合成稀土焦磷酸盐 ,通过对产物的 X射线衍射图的分析来探索合成稀土焦磷酸盐的最佳酸度和最佳锻烧温度 ,并对产物的激发光谱和发射光谱作了分析 ,此方法具有纯度高、粒度小和工艺简单等特点。La4 - x(P2 O5) 3:Eux 的合成 :准确称取 1 0 .0 0 0 0 g La2 O3(99.99% )和 2 .0 0 0 0 g Eu2 O3(99.99% ) ,分别用浓 HNO3(优级纯 )溶解完全 ,加蒸馏水配制成 0 .1 mol/ L 的 La(N...

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使用复杂晶体化学键理论计算了La2 -x SrxCuO4 和La2 -xNdxCuO4 +y中各键的键共价性 ,讨论了键性随着掺杂的变化规律 .研究表明 ,对于 2 1 4结构 ,没有发现明显的化学键性与超导温度的关系 ,因此 2 1 4结构中有关超导现象产生的机理还有待于进一步研究.

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用B3LYP/Lan1 2dz方法优化了La2 Cn(n =- 1 ,0 ,+1 )分子的结构 ,计算了La2 C的电子亲和势和离化能 ,并对计算结果进行了讨论。

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研究了两种不同类型晶体结构的稀土铜酸盐中三价铜对导电性能的影响及三价铜的表征 .Ca2 +取代Y3+或Sr2 +取代La3+,使Y2 Cu2 O5和La2 CuO4中铜的价态升高、样品电阻率降低 .利用化学滴定法、X 射线光电子能谱 (XPS)和磁化率测量对Y2 -xCaxCu2 O5和La2 -xSrxCuO4中三价铜的存在及其自旋状态进行了表征.

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利用浸渍法制备了一系列含Ce La稀土助剂改性的Pt Rh三效催化剂 ,采用各种表征手段和高温抗硫水热老化实验 ,考察了Ce La稀土对Al2 O3 载体的热稳定性和催化剂活性的影响 .研究结果表明 ,稀土La2 O3 的添加主要改善了载体Al2 O3 的高温高比表面性能 ;而CeO2 的引入则明显地提高了CO和NO的催化转化活性 ,但对HC的转化几乎无影响 ,也促进了催化剂的抗硫水热老化性能 ,并且显著地拓宽了催化剂的三效窗口 .这主要归因于CeO2的添加 ,它改善了催化剂上CO ,HC和NO间的相互作用以及CeO2 所特有的储氧功能

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合成了x值不同的La2 -xSrxCuO4±λ( 0 .0≤x≤ 0 .1 )和La2 -xThxCuO4±λ( 0 .0≤x≤ 0 .4)两系列K2 NiF4型复合氧化物催化剂 ,用XRD和IR研究了催化剂的晶体结构 .利用化学分析和XPS等方法测定了该系列含Cu氧化物中Cu离子的平均价态、非化学计量氧 (λ)和催化剂的表面和体相组成 .通过控制B位Cu离子的价态和氧化物的非化学计量氧在一定范围内有规律的变化 ,考察对NO +CO反应的催化性能 ;利用MS TPD法研究了该系列氧化物对NO和CO +NO等小分子的吸附和活化性能 ,在此基础上探讨了含Cu的A2 BO4型复合氧化物对NO +CO反应中的催化作用本质 .发现在低温反应条件下 ,NO分子的活化是控制步骤 ,催化剂的活性与低价离子及其含量有关 .在较高反应温度下 ,NO的吸附为控制步骤 ,催化活性与氧空位有关

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Adsorption and activation of small molecules NO, CO and CO+ NO on LaSrCuO4, La2CuO4 and La1.7Th0.3CuO4 which are typical samples in the sence of nonstoichiometric oxygen(lambda) anrong the series of La2-x(SrTh)(x)CuO4 +/-lambda mixed oxide catalysts were studied by means of MS- TPD (TPSR ), XRD, chemical analysis and so on. It was shown that the adsorption amount of NO can be correlated with the content of oxygen vacancy while the types and strength of adsorption of NO could be related to the oxidation state of the metallic ion. It was also found that CO molecule was first converted into CO32- and then desorbed in the form of CO2 at high temperature during the adsorption and desorption of CO on the mixed oxide with oxygen vacancy. The fact that the profiles of TPD(TPSR) of NO in co-adsorption of NO+CO and in single NO adsorption are similar shows that the adsorption of NO molecule not only has some priority to that of CO but also is stronger than that of CO. It seems that the adsorption of NO plays a dominate role in the activation and decomposition of NO.

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利用MS-TPD法并结合XRD、化学分析等对催化剂进行了表征,探讨了K2NiF4结构La2-x(Sr,Th)xCuO4±λ系催化剂中三个典型样品LaSrCuO4、La2CuO4和La1.7Th0.3CuO4对NO、CO及CO+NO等小分子的吸附性能和活化规律。结果表明:NO吸附量的大小与催化剂中氧空位含量有关,吸附强度和脱附峰种类与金属离子氧化态有关。CO在氧缺陷复合氧化物催化剂上的吸附是首先变为碳酸根,并在高温以CO2物种脱出.在NO和CO的共吸附过程中,有关NO的吸、脱性能与单独NO-TPD中NO的吸脱附规律相似,表明NO在NO+CO共吸附的竞争吸附过程中,优先吸附起决定作用,而受CO的影响较小.NO的吸附是NO活化分解的必要条件.

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Two systems of La2-xSrxCuO4+/-lambda and La2-xThxCuO4+/-lambda, mixed oxides with K2NiF4 structure were synthesized. The compositions and structures of the catalysts were characterized by means of XRD, XPS, chemical analysis and so on. The catalytic behavior for the direct decomposition of NO has been investigated. The results show that the catalytic activity is closely related to the oxygen vacancy and lower valence metallic ion in the direct decomposition of NO. The presence of oxygen vacancy is necessary for mixed oxide to have steady activity in NO decomposition.