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MENA3100, 3/2-10, OBK X-ray diffractionXRD Røntgendiffraksjon Single crystalPowder.

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Presentation on theme: "MENA3100, 3/2-10, OBK X-ray diffractionXRD Røntgendiffraksjon Single crystalPowder."— Presentation transcript:

1 MENA3100, 3/2-10, OBK X-ray diffractionXRD Røntgendiffraksjon Single crystalPowder

2 Diffraction

3

4 Crystal Atomic arrangementLattice

5 1848 The 14 Bravais lattices Lattice + base

6

7 Bragg’s law 2d sin  = n

8 Bragg’s law 2d sin  = n n = 2 But XRD is typically done with monochromatic radiation 2nd. order

9 Bragg’s law 2d sin  = n 2nd. order from 001 1th. order from 002

10 The 14 Bravais lattices Face centered cubic lattice  -iron NaCl  -brass

11 Extinction Example: Face centered cubic Special example: Cubic close packed structure Utslukning

12 Extinction Example: Face centered cubic Special example: Cubic close packed structure Utslukning

13 Don’t confuse with...

14 X-ray diffraction Need X-rays Brehmsstrahlung = white radiation Characteristic X-rays Wavelenght CuK  1 = 1.54056 Å MoK  1 = 0.70930 Å CuK  1 = 1.54056 Å CuK  2 = 1.54433 Å CuK  = 1.5418 Å I(CuK  1 ) = 2·I(CuK  2 )

15 Need sample Single crystal Powder

16 Need experimental setup Diffractometer Bragg-Brentano geometry (Primary monochromator) (Secondary monochromator)

17 Want monochromatic radiation Brehmsstrahlung = white radiation Characteristic X-rays Monochromators: Many possibilities

18 Euclid, The Elements (300 B.C.) Proposition 21, Book III: The angles in the same segment of a circle are equal to another Johansson monochromator

19 Bragg-Brentano geometry The source S can be:

20 Need detector … Need some slits … S Sample Fixed slits: Smaler area at high angle  Smaller area at high angles Variable slits: Same area at all angles

21

22 The experiment Got some crystals Want a powder Gets lot of small crystals

23

24 Want powder Random orientation

25 The result The diffractogram Quartz (Don’t call it spectrum)

26 Why?

27 Identification PDF = JCPDS

28 Indexing

29 Lattice dimensions

30

31 Strain Particle size

32 Fluorescens

33 CuK  1 = 1.54056 Å CuK  2 = 1.54433 Å Primary and secondary monochromators

34 Rietveld refinement

35


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