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1.
基于密度泛函理论(DFT)的B3LYP方法,研究了TinO2和TinO2-(n=1-10)团簇的几何结构、电子结构以及磁性.结果表明,两个氧以分离的原子状态吸附在金属团簇的表面,呈现出以一个钛原子为中心的O-Ti-O的相邻吸附形式.中性团簇和阴离子团簇的能量最低结构相似.稳定性分析表明TinO2具有很高的稳定性,特别是TiO2和Ti7O2.此外,详细讨论了团簇的电离势、电子亲和能、电子解离能和能隙.基于最低能量结构,讨论了团簇的磁性,发现电荷从Ti原子向O原子转移,并且电荷转移主要发生在TinO2的Ti-3d、Ti-4s和O-2p轨道.磁性团簇中反铁磁序占据主导,磁矩主要来源Ti-3d电子的贡献,而两个氧原子的贡献非常小.  相似文献   

2.
采用基于密度泛函理论(DFT)的Dmol3程序系统研究了O原子与O2在 Au19与Au20团簇上的吸附反应行为. 结果表明: O在Au19团簇顶端洞位上的吸附较Au20强; 在侧桥位吸附强度相近. O与O2在带负电Au团簇上吸附较强, 在正电团簇吸附较弱. 从O―O键长看, 当金团簇带负电时, O―O键长较长, 中性团簇次之, 正电团簇中O―O键长较短, 因而O2活化程度依次减弱. 电荷布居分析表明, Au团簇带负电时, O与O2得电子数较中性团簇多, 而团簇带正电时, 得电子数较少. 差分电荷密度(CDD)表明, O2与Au团簇作用时, 金团簇失电子, O2的π*轨道得电子, 使O―O键活化. O2在Au19-团簇上解离反应活化能为1.33 eV, 较中性团簇低0.53 eV; 而在Au19+上活化能为2.27 eV, 较中性团簇高0.41 eV, 这与O2在不同电性Au19团簇O―O键活化规律相一致.  相似文献   

3.
提出了两个稳定的团簇B12Sc4和B12Ti4, 基于理论计算, 研究了它们的结构与储氢性质. 结果发现, 在这两个稳定的团簇中, 过渡金属原子不会聚合在一起而影响它们对氢气的吸附. B12Sc4最多可以吸附12个氢分子, 达到7.25% (质量分数)的储氢量. 它的平均每氢分子吸附能量为10.5 kJ·mol-1. B12Ti4最多只能吸附8个氢分子, 储氢量为4.78%. 但平均每氢分子吸附能量可达50.2 kJ·mol-1. 进一步计算表明, 即使在77 K,也需要很高的氢气压力才能使12个氢分子都吸附到B12Sc4上. 电子结构分析表明, B12Ti4-nH2吸附结构中的Kubas作用要大于相应B12Sc4-nH2结构中的Kubas作用.  相似文献   

4.
利用相对论密度泛函理论在广义梯度近似下研究TbSin (n=2-13)团簇的结构、稳定性、电子和磁学性质. 对团簇的平均结合能、离解能、电荷转移、最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的能级差、Mulliken 电荷分析和磁学性质进行了计算和讨论. TbSin团簇并没有像实验推测的那样在n=10形成嵌入式的结构. 我们推断电子亲和势的急剧变化不仅与嵌入式的结构有关, 而且与电子的固有稳定性相关.Mulliken 电荷分析表明电荷总是从Tb 原子转向Si 原子. 团簇的磁矩主要局域在Tb 原子的周围, 并且主要由f电子贡献, f 电子表现出局域性并且不参与化学成键. 以TbSi10为例的分波态密度分析表明Tb与Si 原子间存在很强的sp轨道杂化.  相似文献   

5.
罗云清  邱美  杨伟  朱佳  李奕  黄昕  章永凡 《物理化学学报》2015,30(12):2224-2232
采用基于第一性原理的分子动力学和量子力学相结合的方法, 对W3O9团簇在经Li 和Al 原子掺杂的MgO(001)表面的负载构型、稳定性以及体系的电子结构进行了系统研究. 结果表明, 当掺杂发生在表层时, 杂质原子的类型对W3O9团簇的负载构型有显著影响. 对于缺电子的Li 掺杂, 负载后W3O9团簇环状构型并不稳定, 转化为链状结构; 而Al 原子的掺杂则使得MgO(001)表面电子富余, 此时W3O9团簇存在平躺和垂直两种吸附方式, 二者能量稳定性相近, 其中前者存在同时与三个W原子成键的帽氧结构. 当掺杂发生在次表层时, 两种掺杂体系W3O9的负载构型相似, 团簇仍保持环状结构并倾向于采用垂直方式沉积在表面上. 与Li 掺杂体系相比, 富电子的Al 掺杂可显著增强W3O9与MgO(001)表面之间的结合能力, 负载后有较多电子从表面转移到团簇中特定的W原子上, 这将对W3O9团簇的催化性能产生显著影响.  相似文献   

6.
采用密度泛函理论B3LYP方法, 在B3LYP/6-311++G(2d,2p)//B3LYP/6-311++G(d,p)基组水平上对乙醇-水分子团簇(C2H5OH(H2O)n (n=1-9))的各种性质进行研究, 如: 优化的几何构型、结构参数、氢键、结合能、平均氢键强度、自然键轨道(NBO)电荷分布、团簇的生长规律等. 结果表明, 从二维(2-D)环状结构到三维(3-D)笼状结构的过渡出现在n=5的乙醇-水分子团簇中. 此外, 利用团簇结合能的二阶差分、形成能、能隙等性质, 发现在n=6时乙醇-水分子团簇的最低能量结构稳定性较好, 可能为幻数结构. 最后, 为了进一步探讨氢键本质, 将C2H5OH(H2O)n (n=2-9)最低能量结构的各种性质与纯水分子团簇(H2O)n (n=3-10)比较, 结果表明前者与后者中的水分子之间氢键相似.  相似文献   

7.
利用密度泛函理论在广义梯度近似(GGA)和Perdew-Wang交换关联泛函条件下研究了小团簇ZrmOn (1≤m≤5, 1≤n≤2m)的几何结构和稳定性. 结果表明: 所有团簇的最低能量结构可通过锆团簇的连续氧化获得, 一般情况下O原子占据在Zr团簇的桥位. (ZrO2)3和(ZrO2)5团簇的基态结构符合配位数规则和成键规律. 此外, 讨论了氧化锆团簇的分解通道和分解能, 值得指出的是在Zr原子数相同时ZrmO2m-1团簇(除了Zr4O7)存在最大的分解能.  相似文献   

8.
利用密度泛函理论研究了Aun(n=2-9)团簇吸附一个乙醇分子的结构和电子性质. 研究结果表明: Aun(n=2-9)团簇的最稳定构型为二维平面结构, Au6团簇最稳定; 吸附过程是通过金团簇上一个特定的金原子与乙醇分子中氧原子相互作用完成, 形成了20种稳定构型; 金原子的配位数对吸附作用影响明显; 作为吸附主体的金团簇和被吸附的乙醇分子在吸附前后构型无明显变化, 它们之间为弱相互作用.  相似文献   

9.
用密度泛函理论(DFT)的B3LYP方法, 在6-311G*水平上对AlmN2和AlmN2 (m=1~8)团簇的几何构型、电子结构、振动频率和分子轨道进行了理论研究. 结果表明, AlmN2类团簇的基态结构有两种基本构型, 一种是以N—N键为核心周围与Al原子相配位形成的, 一种是由两个AlnN (n≤m/2)分子碎片通过共用Al原子或Al—Al键相互结合形成的. 对AlnN分子碎片相互结合形成结构的绝热电离能讨论得到, m为偶数的团簇比m为奇数的稳定.  相似文献   

10.
为了从理论层面深入探究团簇 ConMoS(n=1~5)的电子性质、光学性质及磁性,弄清其内在关联,依据拓扑学原理和密度泛函理论,在B3LYP/def2-TZVP量子化学水平和多个自旋多重度下对该团簇进行结构优化并分析。结果表明:团簇ConMoS共有21种稳定构型;通过对NPA(自然布居分析,natural population analysis)电荷、静电势、亲电指数、电离势、光学电负性和折射率等分析得出,金属原子有高概率失去电子,非金属原子相对更容易得到电子,团簇Co5MoS中的构型5a在最稳定构型中有高的得失电子能力、反应活性和折射率,Co和Mo原子易发生亲核反应,S原子易发生亲电反应;对该团簇自旋布居数、原子磁矩、轨道磁矩和态密度分析发现,该团簇磁性主要由Co原子的d轨道提供,且团簇Co3MoS表现出了比其它尺寸团簇更为稳定和优异的磁性。最终得出团簇Co3MoS在磁性方面有较好的表现且构型5a在活性和光学领域有一定的潜力。  相似文献   

11.
The phase equilibria in the V2O3Ti2O3TiO2 system have been determined at 1473°K by the quench method, using both sealed tubes and controlled gaseous buffers. For the latter, CO2H2 mixtures were used to vary the oxygen fugacity between 10?10.50 and 10?16.73 atm. Under these conditions the equilibrium phases are: a sesquioxide solid solution between V2O3 and Ti2O3 with complete solid solubility and an upper stoichiometry limit of (V, Ti)2O3.02; an M3O5 series which has the V3O5 type structure between V2TiO5 and V0.69Ti2.31O5 and the monoclinic pseudobrookite structure between V0.42Ti2.58O5 and Ti3O5; series of Magneli phases, V2Tin?2O2n?1TinO2n?1, n = 4–8; and reduced rutile phases (V, Ti)O2?x, where the lower limit for x is a function of the V(V + Ti) ratio. The extent of the different solid solution areas and the location of the oxygen isobars have been determined.  相似文献   

12.
The interactions between the neutral and charged (?2, ?1, +1, and +2) Tin (n = 1–7) clusters and one O2 molecule were investigated by density functional theory. The calculated results show that the oxygen molecule is dissociative on the neutral Tin clusters. Geometrically, the two O atoms are distributed at the two sides across the neutral Tin cluster for n = 1–4 and the oxygen atom favors the three‐fold hollow site for n = 5, 6, and 7. The binding energy per atom (Eb) and energy gap (Egap) show higher stability and lower chemical activity of the neutral TinO2 (n = 1–7) systems compared with the corresponding Tin clusters. The adsorption energies (Ead) exhibit a continuously ascending tendency except for n = 4. The results of the addition of different charges (?2, ?1, +1, and +2) on the most stable neutral TinO2 (n = 1–7) systems indicate that their geometries are usually perturbed. The stabilities of the neutral TinO2 systems are enhanced by adding one negative charge. The strongest interaction of the charged Tin clusters (?2, ?1, +1, and +2) with O2 molecule is found at charge +2. © 2010 Wiley Periodicals, Inc. Int J Quantum Chem, 2011  相似文献   

13.
The crystal structures of three lithium titanates by neutron diffraction powder profile analysis were determined. The tetragonal anatase form of TiO2 becomes orthorhombic on ambient-temperature lithium insertion to Li0.5TiO2 due to the formation of TiTi bonds. The lithium partially occupies the highly distorted octahedral interstices in the anatase framework in fivefold-coordination with oxygen. Cubic LiTi2O4 formed by heating Li0.5TiO2 anatase has a normal spinel structure with Li in the tetrahedral sites. In Li2Ti2O4 formed by reacting LiTi2O4 spinel with n-BuLi at ambient temperature, the titanium remains in the spinel positions but the lithium is displaced, filling all the available octahedral sites.  相似文献   

14.
This paper presents the comparative study of two dimensionally stable anodes (DSA?) of nominal composition Ti/Ru0.3Ti0.7O2 and Ti/Ru0.3Ti0.4Ir0.3O2, prepared by thermal decomposition of the chloride precursor mixtures at 450°C. The materials were studied by scanning electron microscopy (SEM), cyclic voltammetry and Tafel measurements to obtain information about their surface and electrocatalytic properties towards Cl2 evolution reaction. The stability of the prepared anodes was investigated under accelerated conditions. It has been observed that the coating surface with 30% mole IrO2 possesses more compact structure with less cracks. Furthermore, it had excellent electrocatalytic activity for the chlorine evolution. Accelerated stability tests showed long lifetime for Ti/Ru0.3Ti0.4Ir0.3O2 electrode. On the other hand, besides the excellent improvement of catalytic activity, the stability of the ternary oxide electrode increases compared to the binary oxide one. The deactivation rate appeared to be a consequence of the different morphology and synergetic effects of the prepared coatings.  相似文献   

15.
The structural, electronic, and vibrational characteristics and energies of the isolated polyoxide clusters Sc20O30, P20O50, Ti20O30F20, and V20O30F20 and ammonia complexes Sc20O30 · nNH3 were calculated by the density functional theory B3LYP method with several basis sets. The computation results show that a fullerene-like closo structure I h with oxygen bridges located above the midpoints of the edges of an empty [M20] dodecahedron is preferable for the Ti20O30F20 and V20O30F20 clusters with four-coordinate metal atoms protected by the outer M-F bonds. This structure with a cage diameter of ∼1 nm and the diameter of nearly planar decagonal faces (windows) of ∼0.5 nm is stable to dissociation into fragments and to strong geometric distortions and retains its closo shape when molecules like NH3 and anions like H are attached to the cage. An analogous closo structure is favorable for the P20O50 cluster; however, in this structure, the [P20] cage is severely distorted and all 12 windows are strongly corrugated. For Sc20O30, the I h dodecahedron with bare three-coordinate Sc atoms corresponds to a local minimum of the potential energy surface, which is 170–200 kcal/mol less favorable than compact puck-shaped isomers in which four- and five-coordinate metal atoms and three- and four-coordinate oxygen atom prevail. “Solvation” of the dodecahedral and puck-shaped Sc20O30 isomers by ammonia molecules strongly decreases the energy gap between the isomers; however, the dodecahedron I h in all cases remains a high-lying intermediate. According to calculations, most polyoxides under consideration have a high electron affinity (comparable with or higher than that of fullerenes) and is able to add three to five or more alkali-metal atoms to form radical salts in which clusters are in the state of polyanions. Because of large sizes of the [M20] cages and their windows, the interior of the cage (as distinct from fullerenes) can accommodate a considerable number of atoms and several small molecules. The V20O30F20 cluster has 20 unpaired electrons and can be treated as a molecular magnet. The properties of the [M20] cages depend only slightly on the outer substituents. It is suggested that the pattern will be retained upon the substitution of OH groups for the F atoms and that the hydroxo-substituted clusters can bind to each other through hydrogen bridges and serve as building blocks for self-assembly into ordered nanometer and crystalline structures of various dimensions. Original Russian Text ? O.P. Charkin, N.M. Klimenko, D.O. Charkin, 2009, published in Zhurnal Neorganicheskoi Khimii, 2009, Vol. 54, No. 5, pp. 775–785.  相似文献   

16.
Reduced titanates in the ATi2O4 (A=Li, Mg) spinel family exhibit a variety of interesting electronic and magnetic properties, most notably superconductivity in the mixed-valence spinel, Li1+xTi2−xO4. The sodium and calcium analogs, NaTi2O4 and CaTi2O4, each differ in structure, the main features of which are double rutile-type chains composed of edge-sharing TiO6 octahedra. We report for the first time, the properties and band structures of these two materials. XANES spectroscopy at the Ti K-edge was used to probe the titanium valence. The absorption edge position and the pre-edge spectral features observed in the XANES data confirm the assignment of Ti3+ in CaTi2O4 and mixed-valence Ti3+/Ti4+ in NaTi2O4. Temperature-dependent resistivity and magnetic susceptibility studies are consistent with the classification of both NaTi2O4 and CaTi2O4 as small band-gap semiconductors, although changes in the high-temperature magnetic susceptibility of CaTi2O4 suggest a possible insulator-metal transition near 700 K. Band structure calculations agree with the observed electronic properties of these materials and indicate that while Ti-Ti bonding is of minimal importance in NaTi2O4, the titanium atoms in CaTi2O4 are weakly dimerized at room temperature.  相似文献   

17.
Molecular structures of [(Ph3Sn)2O3Se] (1) and [(Ph3Sn)2O4Cr](CH3OH) (2) have been determined using spectroscopic techniques and X-ray analysis. Each structure consists of polymers containing two types of tin centres: one of them is bridged by two oxygen atoms of the trifunctional oxyanion into a helical chain while the other is pendant to this chain. In the case of the chromato derivative the pendant tin is also bonded to the oxygen atom of the solvent (methanol); hydrogen bonds between the methanol and the non-coordinated oxygen of the chromate generate a three-dimensional structure containing tin atoms in a trigonal bipyramidal environment. In contrast, the two tin centres in the non-solvated selenito derivative have distinct geometries (tetrahedral and trigonal bipyramidal). Variable temperature Mössbauer spectroscopy data are consistent with the polymeric structure of the selenito derivative while NMR spectroscopy shows the presence of monomeric species in solution.  相似文献   

18.
Phase equilibria studies of the CaO:TiO2:Nb2O5 system confirmed the formation of six ternary phases: pyrochlore (A2B2O6O′), and five members of the (110) perovskite-slab series Can(Ti,Nb)nO3n+2, with n=4.5, 5, 6, 7, and 8. Relations in the quasibinary Ca2Nb2O7−CaTiO3 system, which contains the Can(Ti,Nb)nO3n+2 phases, were determined in detail. CaTiO3 forms solid solutions with Ca2Nb2O7 as well as CaNb2O6, resulting in a triangular single-phase perovskite region with corners CaTiO3-70Ca2Ti2O6:30Ca2Nb2O7-80CaTiO3:20CaNb2O6. A pyrochlore solid solution forms approximately along a line from 42.7:42.7:14.6 to 42.2:40.8:17.0 CaO:TiO2:Nb2O5, suggesting formulas ranging from Ca1.48Ti1.48Nb1.02O7 to Ca1.41Ti1.37Nb1.14O7 (assuming filled oxygen sites), respectively. Several compositions in the CaO:TiO2:Ta2O5 system were equilibrated to check its similarity to the niobia system in the pyrochlore region, which was confirmed. Structural refinements of the pyrochlores Ca1.46Ti1.38Nb1.11O7 and Ca1.51Ti1.32V0.04Ta1.10O7 using single-crystal X-ray diffraction data are reported (Fd3m (#227), a=10.2301(2) Å (Nb), a=10.2383(2) Å (Ta)), with Ti mixing on the A-type Ca sites as well as the octahedral B-type sites. Identical displacive disorder was found for the niobate and tantalate pyrochlores: Ca occupies the ideal 16d position, but Ti is displaced 0.7 Å to partially occupy a ring of six 96g sites, thereby reducing its coordination number from eight to five (distorted trigonal bipyramidal). The O′ oxygens in both pyrochlores were displaced 0.48 Å from the ideal 8b position to a tetrahedral cluster of 32e sites. The refinement results also suggested that some of the Ti in the A-type positions may occupy distorted tetrahedra, as observed in some zirconolite-type phases. The Ca-Ti-(Nb,Ta)-O pyrochlores both exhibited dielectric relaxation similar to that observed for some Bi-containing pyrochlores, which also exhibit displacively disordered crystal structures. Observation of dielectric relaxation in the Ca-Ti-(Nb,Ta)-O pyrochlores suggests that it arises from the displacive disorder and not from the presence of polarizable lone-pair cations such as Bi3+.  相似文献   

19.
Reduction of the titanium-niobium oxides follows a common pattern. TiO2 is eliminated, to form a new phase richer in titanium than the original compound, and Nb(iv) replaces Ti(iv) in the original block structure, which is thereby enriched in niobium. With TiNb2O7, the second phase is a TiO2NbO2 solid solution, with the rutile structure, initially with a high titanium content, in equilibrium with a solid solution of composition Me3O7, isostructural with TiNb2O7. At log pO2 (atm) about ?9.0 this reaches the limiting composition Ti0.72Nb2.28O7, in equilibrium with Ti0.56Nb0.44O2. The Me3O7 block structure then transforms into the Me12O29 block structure (Ti2Nb10O29Nb12O29 solid solution), which rapidly increases in niobium content as reduction continues. Reduction of Ti2Nb10O29 at oxygen fugacities above log pO2 (atm) = ?9.0 forms the Me3O7 phase as the titanium-rich phase. At log pO2 = ?9.0, and a composition about Ti1.6Nb10.4O29, the rutile solid solution takes over as second phase. The niobium/titanium ratio in both phases rises as reduction proceeds, and the last vestiges of the Me12O29 phase, in equilibrium with the final product, Ti0.17Nb0.67O2, are almost denuded of titanium.  相似文献   

20.
Na2Ti3O7 and Na2Ti6O13 were synthesized by sol-gel method in order to obtain pure phases. Different heat-treatments were applied on powders and pellets of these materials. The effects were studied by XRD, dilatometry, TGA-DTA, SEM and electrochemical impedance spectroscopy. Pure Na2Ti3O7 was obtained at 973 K. Sintering at 1373 K caused a partial decomposition into Na2Ti6O13. The Na2Ti3O7 powder sintered at 1273 K showed polygonal microstructure. Na2Ti3O7 pellets sintered at 1323 K for 10 h exhibited large structures. This latter microstructure decreased the electrical conductivity of Na2Ti3O7. Pure Na2Ti6O13 was obtained at 873 K. Sintering at 1073 K caused a partial decomposition into TiO2 (rutile). Na2Ti6O13 pellets sintered at 1323 K for 10 h exhibited common shrinkage behavior. This shrinkage process increased the electrical conductivity of this material. The presence of TiO2 resulted in a oxygen partial pressure dependence of the electrical conductivity.  相似文献   

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