衍射花样指数化与应用概述精品文稿.ppt
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1、衍射花样指数化与应用概述第1页,本讲稿共28页The first step in analysing unknown powder pattern is often an attempt to find a unit cell that explains all observed lines in the spectrum.You do not need additional crystallographic data,although if it exists it makes for faster and more reliable results.The material to be a
2、nalysed must be single phased and the experimental material m u s t b e v e r y a c c u r a t e.第2页,本讲稿共28页Indexing programs use only the positional information of the pattern and try to find a set of lattice constants(a,b,c,a,b,g)and individual Miller indices(hkl)for each line.The form of equations
3、 to solve is complicated for the general case(triclinic)in direct space but is straightforward in reciprocal space.In the latter the set of equations is:第3页,本讲稿共28页Q=h2A+k2B+l2C+hkD+hlE+klFwhere the Q-values are easily derived from the diffraction angle Q.This set has to be solved for the unknowns,A
4、,B,C,D,E,F,which are in a simple way related to the lattice constants.Finding the proper values for the lattice parameters so that every observed d-spacing satifies a particular combination of Miller indices is the goal of indexing.It is not easy even for the cubic system,but it is very difficult fo
5、r the triclinic system.第4页,本讲稿共28页There are two general approaches to indexing,the exhaustive and the analytical approach.Both of these approaches require very accurate d-spacing data.The smaller the errors,the easier it is to test solutions because there are often missing data points due to intensi
6、ty extinctions related to the symmetry or the structural arrangement or due to lack of resolution of the d-spacing themselves.The earliest approaches were of the exhaustive type and were done by graphical fitting or numerical table fitting.第5页,本讲稿共28页Indexing ProgramsThe methods currently implemente
7、d are shown bold.They are selected through the item Indexing in the main menu.Program AuthorTypeITO VisseranalyticalTREORWernerexhaustivePOWDERDICVOLCUBIC第6页,本讲稿共28页The programs use a set of common parameters,e.g.the wavelength and a method specific set.After you have clicked on a program with the l
8、eft mouse button indexing is immediately started with the active parameter set.Depending on the problem and computer type the program run can take from seconds to many minutes.All solutions are computed and stored internally.The best one is displayed at the top of the screen,the next to best at the
9、bottom.For an overview of all solutions select Solutions in the main menu.第7页,本讲稿共28页Miller Indices Triplet of integer numbers uniquely assigned to a Bragg reflection.The notation is usually in the form of(hkl).Formally spoken,Miller Indices represent coordinates of lattice points in reciprocal spac
10、e.第8页,本讲稿共28页Reciprocal Space Direct space is composed of unit cells and its contents,whereas reciprocal space is a lattice whose lattice points are Bragg reflections.Direct and reciprocal space are tightly coupled.第9页,本讲稿共28页 Lattice constants A set of maximally six floating numbers representing th
11、e unit cell.As crystal symmetry grows the number of lattice constants needed to describe the metrics of a unit cell reduce.In the cubic system there is only one constant.第10页,本讲稿共28页Q-valueThe Q-value is one of several possible forms to represent the positional information of peaks in powder pattern
12、.They are defined as:Q=1/d2=(4 sin2Q)/l2Q can be represented as a quadratic form of the(hkl)s.Q=h2A+k2B+l2C+hk D+hl E+kl F,where A,B,C,D,E,F are related to the lattice constants.In ITO each Q-value is multiplied by 10000.第11页,本讲稿共28页d-SpacingThe d-spacing is one of several possible forms to represen
13、t the positional information of peaks in powder pattern.Other forms are the angle Q,or 2Q,or Q-values.Win_DIFFRAC assumes input in the form of d-spacings.They are internally converted,e.g.ITO works only with Qs.第12页,本讲稿共28页TREORThis program uses the exhaustive approach.It is widely used for indexing
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