14 resultados para ABO

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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The linear thermal expansion coefficients of ABO(4) compounds are determined and the expansion tendency is analyzed from the chemical bond viewpoint. All chemical bonds contributions are involved. The contributions from different chemical bonds are compared with each other and the origin of the expansion behavior of ABO(4) oxides is revealed that the A-O bonds expansions dominate the compound expansion. The calculated expansion coefficients agree satisfactorily with the experimental data. By analyzing the expansion regularity the range of the expansion coefficients can be qualified. The thermal expansion coefficients of some ABO(4) compounds having not been measured are predicted and discussed.

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The mixed oxides LaNiO3, La0.1Sr0.9NiO3, La2NiO4 and LaSrNiO4 with perovskite (ABO(3)) and related(A(2)BO(4)) structures were prepared and the adsorption property for NO and the catalytic activity for NO decomposition over these oxidse were also tested. The catalysts were characterized by means of BET surface measurement, chemical analysis, NO-TPD etc.. It was shown that the adsorption amount of NO is correlated with the concentration of oxygen vacancy formed and the adsorption type and strength of NO are related to the valence of metallic ion. Generally there are three kinds of adsorption species, NO-, NO+ and NO on the mixed oxides, among them the negative adsorpion species (NO-) are active for NO decomposition. The weaker the adsorption of oxygen on the catalyst is, the faster the mobility of oxygen is and the easier the redox process takes place in reproducing the active sites in which the oxygen species (O-, O2-) would participate.

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Complement-dependent antibody-mediated acute humoral rejection is the major obstacle of clinical transplantation across ABO incompatibility and human leukocyte antigen presensitization. We previously demonstrated that Yunnan-cobra venom factor (Y-CVF) cou

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下载PDF阅读器灵长类动物的ABO血型抗原都表达在组织器官内,而不是在红细胞上,这给灵长类动物血型的鉴定带来很大的困难.为找到更加简捷、准确鉴定灵长类动物类人ABO血型的方法,采用近年来临床上广泛应用的卡式微柱凝胶正、反定型法对34只猕猴和16只食蟹猴的血型进行了鉴定,并与肾组织免疫组化法的检测结果进行比较.结果显示:卡式微柱凝胶正定型法的检测结果中无一例为阳性结果;血浆中的纤维蛋白原和人-猴种属间非特异性抗体都会对卡式微柱凝胶反定型法的部分检测结果产生干扰;采用经正常人O型红细胞吸附处理后的清亮血清,卡式微柱凝胶反定型法的检测结果明确,与免疫组化法判定结果一致.由此得出:卡式微柱凝胶反定型法可以用于灵长类动物血型的鉴定,其主要干扰因素为血浆内的纤维蛋白原和人-猴种属间非特异性抗体,在采用清亮血清及经正常人O型红细胞吸附处理后能消除其干扰.

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运用经典血清学方法首次在红鯽中证明了一种与金枪鱼中的A-B-O血型及人类的ABO血型模式相似的红细胞抗原系统,命名为S血型系统。该系统有四种血型表型:S~1,S~2,S~2S~2和S~0,推测它由S~1、S~2和S~0三个复等位基因决定。

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本文使用复杂晶体化学键理论研究了无机功能材料的电子结构、性能与化学键参数之间的关系。具体的研究对象包括铜氧化物高温超导体、A格位和B格位掺杂ABO_3型化合物以及镧碳团簇的结构、稳定性与振动光谱等问题。结果表明,对于Y123、Y124、Y247结构的高温超导体,发现当铜氧面的共价性小于铜氧链的共价性时,应该有超导现象产生,解释了在Y_(1-X)Pr_xBa_2Cu_3O_7中在Pr的掺杂浓度大于0.55时超导现象消失这一实验事实。而在其它系列高温超导体中没有发现此规律。据此我们预测在Y_(1-x)Pr_xBa_2Cu_3O_7中,只要Pr的价态小于3.15价,则不论Pr的浓度为多少超导现象永远不会消失:若Pr的价态完全为4.0价,则超导现象会在Pr的浓度大于0.19时消失。在Y_(1-x)Ca_xBa_2Cu_3O_(6+y)中,铜氧面上的载流子浓度是氧含量和Ca掺杂量相互竞争的结果。由Ca掺杂产生的载流子有一部分被束缚在了氧的周围,使得可流动的载流子的数目并未增加,甚至可能减小,从而导致超导温度下降。在对Tl系和Hg系的研究中,发现对于最高的超导温度有一个最佳的载流子浓度值,载流子浓度过高或过低均对超导不利。此外我们还发现对铜氧化物超导体,氧含量的变化既影响CuO链又影响CuO_2面内Cu-O键的共价性,而掺杂的阳离子的浓度只影响CuO_2面内键的共价性。以上这些结果说明本文尚未发现与超导有关的统一规律,同时也说明产生超导的原因是复杂的,还有待于进一步研究。对于ABO_3型化合物,结构相变化使得化学键参数产生突变。对于镧碳团簇,发现在碳的个数小于10时,碳的个数为偶数时稀土位于碳环上时最稳定,碳的个数为奇数时稀土通过两个单键与碳环相连最稳定。

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Two series of layered mixed oxides La4BaCu5-xMxO13+lambda(M = Mn, Co, x = 0 similar to 5) were prepared and characterized by means of XRD, XPS, O-2-TPD and chemical analysis. The results show that their structures are 5-layered ABO(3) perovskite, and the XPS and O-2-TPD investigation confirms that there exists synergistic effect between Cu ion and M when M ion is doped into the lattice of La4BaCu5O13+lambda,, and the synergistic effect between Mn and Cu is stronger than that of Cu-Co.

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A series of sample having the stoichiometry La4BaCu5-xMnxO12 (x = 0 similar to 5) were prepared, characterized by XRD, IR and H-2 - TPR and used as catalyst for NO + CO reaction. It was found that they have 5 - layered ABO(3) - type structure. The results of H-2 - TPR showed that the Cu ion was more easily reduced while a part of them was replaced by Mn ions. Their catalytic behavior to NO + CO reaction was investigate, La4BaCu2Mn3O12 showed the highest catalyst activity for the reaction than the others. The reaction mechanism is discussed:the activity of the catalysts could be attributed to the Cu ions, but it was improved when Mn ions took the place of some Cu ions.

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The mixed oxides, including LaBa2Cu3O7, LaBaCu2O5, La4BaCu5O12 with perovskite structure, were prepared. The catalysts were characterized by means of chemical analysis, XRD, H-2-TPR. It was found that their structures were layered ABO(3) perovskite structure and they were the active catalysts for the NO reduction by CO. The existence of Cu3+ is an important factor to give the catalysts a high activity for the NO reduction by CO.

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In terms of the theory of chemical bonds on complex crystals(CBCC), the crystal structure and coordination, the chemical bond parameters of a group of ABO(4)-type crystals were calculated in detail, The results show that the relation between the crystal field splitting of Nd3+ ion and the covalency of the crystal is linear.

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Superconductor mixed oxides were often used as catalysts at higher temperature in gas phase oxidations, and considered not suitable for lower temperature reactions in the liquid-solid phase; here the catalysis of YBa2Cu3O7+/-x and Y2BaCuO5+/-x in the phenol hydroxylation at lower temperature with H2O2 as oxygen donor was studied, and found that the superconductor YBa2Cu3O7+/-x, has no catalytic activity for phenol hydroxylation, but Y2BaCuO5+/-x does, even has better catalytic activity and stability than most previously reported ones. With the studies of catalysis of other simple metal oxides and perovskite-like mixed oxides, a radical substitution mechanism is proposed and the experimental facts are explained clearly, and draw a conclusion that the perovskite-like mixed oxides with (AO)(ABO(3)) and (AO)2(ABO(3)) structure have better catalytic activity than the simple perovskite oxides with (ABO(3))(3) structure alone, and (AO) structure unit is the key for the mixed oxides to have the phenol hydroxylation activity. No pollution of this process is very important for its further industrial application.

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A series of (AO) (ABO(3))(n)(A = La, B = Ni, n = 1 similar to 4) type mixed oxides were synthesized and characterized by means of XRD, XPS, IR, TPD, TPR. Their structure characteristics and redox properties were studied. The nonstoichiometry (lambda) of oxygen and the valence of transition metal Ni were determined by using chemical analysis method. The catalytic activities of this series of mixed oxides for complete oxidation of CO and CH4 were examined and the relationships among activity, composition and structure were discussed.

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The redox potential, surface composition and oxygen species of a series of complex oxides LaMn1-xFexO3 (x=0-1) having perovskite structure (ABO(3)) have been investigated by means of XI'S. The variation of binding energies referring to Mn2p and Fe 2p under different treatment offerred an obvious evidence of redox between Mn and Fe, which could be expressed as Mn4+ + Fe(3-delta)+ Mn(4-delta)+ Fe3+ Feat Through computer fit three kinds of adsorbed oxygen species (O-I, O-II, O-III) have been evaluated based on the XPS spectra of O1s. From the variation of contents of different oxygen species, it could be concluded that. the redox occuring in the surface might be related with the adsorbed oxygen species O-I and O-II, furthermore the possibility of transfer of electron between adsorption site and oxygen was also discussed.

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A series of LaMnyCo1-yO3 compounds were prepared by the complexation method with citric acid. XPS was used to investigate the oxygen state in perovskite-type (ABO(3)) Complex oxide LaMnyCo1-yO3 catalysts. The result showed that three oxygen species (alpha