催化功能材料2结构与性能的关系课件.ppt
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1、Chapter two: Relationship between surface structures of catalytic materials and their catalytic properties (4 credit hours) By Dr. Yejun Qiu Department of Materials Science and Engineering Spring, 2011. ? Electron structure ? Crystal structure ? Defect structure ? Surface acid or base sites (importa
2、nt acid-base catalysis) ? Skeleton structure (Example: zeolite) ? Size effect (Nano effect) for 1. Electron structure ? Atomic Orbital Theory ( 原子轨道理论); ? Molecular Orbital Theory ( 分子轨道理论); ? Band theory (electron structure of solid). 1.1. Atomic Orbital Theory ? electron cloud and atomic orbital:
3、1 s , 2s , 2px, 2py, 2 pz 2dz dxz dyz dxy 2 2dx -y The atomic orbital model is the currently accepted model of the placement of electrons in an atom. Na: ? The order of Atomic Orbital Energy: ? Energy shell (n = 1、2、3、4、5、6) ? Energy level (s, p, d, f) (1)Same energy shell, nsnpndnf; (2)Same energy
4、level, 1s2s3s4s; (3)Same energy shell, different atomic orbital, 2px=2py=2pz, etc.; (4)Different energy shell and energy level: 1s2s2p3s3p4s3d4p5s4d5p6s4f5d6p7s Energy Pauli approximate energy level diagram ? Filling of orbital ? Pauli exclusion principle: “no two electrons in the same atom can be i
5、n the same quantum state.” One atomic orbital can contain two electrons at most and the spin direction is opposite. ? Hunds rule is an observational rule which states that a greater total spin state usually makes the resulting atom more stable. Every orbital in a subshell is singly occupied with one
6、 electron before any one orbital is doubly occupied, and all electrons in singly occupied orbitals have the same spin. d-orbital p-orbital ? Stable electron configuration: A stable electron configuration refers to an atom in which the outer electron shell is unoccupied, half-full or full. 24Cr:Ar3d5
7、4s1 (3d44s2) 29Cu:Ar3d104s1 (3d94s2) Generally, more unoccupied d-orbitals are beneficial to catalytic reactions. 1.2. Molecular orbital theory ? One of chemical bonding theories ? Molecular orbitals are obtained by combining the atomic orbitals on the atoms in the molecule. Example: the formation o
8、f H-H bond. This diagram suggests that the energy of an H2 molecule is lower than that of a pair of isolated atoms. As a result, the H2 molecule is more stable than a pair of isolated atoms. Examples: O2 and F2 Examples:B2, C2, and N2 Molecular orbitals of benzene ? delocalized molecular orbital: In
9、 the benzene ring, the bonds are delocalized and form around the entire ring, forming a torus (doughnut-shaped) orbital above and below the sigma bond. Examples: CH2=CH-CH=CH2, 1.3. Energy band structure Why bands occur in materials? The electrons of a single isolated atom occupy atomic orbitals, wh
10、ich form a discrete set of energy levels. If several atoms are brought together into a molecule, their atomic orbitals split, as in a coupled oscillation . This produces a number of molecular orbitals proportional to the number of atoms. When a large number of atoms (of order 1020 or more) are broug
11、ht together to form a solid, the number of orbitals becomes exceedingly large. Consequently, the difference in energy between them becomes very small. Thus, in solids the levels form continuous bands of energy rather than the discrete energy levels of the atoms in isolation. However, some intervals
12、of energy contain no orbitals, no matter how many atoms are aggregated, forming band gaps. Metal: Fe, Co, Ni,; Semiconductor: Ge(0.66eV), Si(1.12eV), TiO2(3.23eV), ZnO(3.3eV), GaAs(1.42eV), GaN(3.44eV), Insulator: rubber, ceramics, Comparison of the band gaps for a metal, a semiconductor and an insu
13、lator. Energy Band Structure Density of States (DOS) 1.4. Effect of electron structure on catalysis Example: Photocatalysis is the acceleration of a photoreaction in the presence of a catalyst. Band gap:3.23 eV 760nm): 43%; UV-light(400nm): 7%. In photogenerated catalysis, the photocatalytic activit
14、y (PCA) depends on the ability of the catalyst to create electronhole pairs, which generate free radicals (hydroxyl radicals: OH) able to undergo secondary reactions. Eigen value ( E) of the outer orbital of the BO69- (B = Ti - Ni) clusters Photocatalytic activity 文献:桑丽霞 , 傅希贤, 白树林, 杨秋华, 王俊珍, 曾淑兰.感光
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