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Spectroscopy
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In This Section

Sub Navigation
  • Beamline Layout and Specifications
  • B18 End Station
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  • From proposal submission to beamtime
    • Access routes
    • Estimating the number of shifts for your experiment
    • Planning your experiment
    • Sample preparation
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Instruments by Science Group

Macromolecular
Crystallography
Soft Condensed
Matter
Imaging and
Microscopy
Biological
Cryo-Imaging
Magnetic
Materials
Structures and
Surfaces
Crystallography
Spectroscopy

B18 Contact

Beamline Phone Number:
+44 (0) 1235 778695

Beamline E-mail: 

DIAMONDB18@diamond.ac.uk

Principal Beamline Scientist:
Diego Gianolio
Tel: +44 (0) 1235 778228
E-mail: diego.gianolio@diamond.ac.uk

More

Science Group Leader

Prof. Sofia Diaz-Moreno

Email: sofia.diaz-moreno@diamond.ac.uk
Tel: +44 (0) 1235 778158

B18 Core XAS

Status: Operational

Beamsize: 200 µm x 250 µm
Energy: 2.05 - 35 keV

EXAFS: Extended X-ray Absorption Fine Structure XRF: X-ray Fluorescence X-ray Diffraction XAS: X-ray Absorption Spectroscopy XANES: X-ray Absorption Near Edge Structure In situ Imaging NEXAFS: Near Edge X-ray Absorption Fine Structures Spectroscopy X-ray Powder Diffraction
Tweets by B18Diamond
  1. Instruments
  2. Spectroscopy
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  4. From proposal submission to beamtime
  5. Sample preparation

Sample preparation

Both solid and liquid samples can be measured at B18. Solid samples can be in the form of powders, films, electrodes, etc. 

If your samples are powders:

The best way to measure them would be in the form of a pellet. At B18, 13mm and 8mm pellet makers are available.

  • Estimate the weight of the sample you need to put into the pellet. There are several softwares available to do this calculation, for e.g. XAFSmass. 
  • Mix your sample as homogeneously as possible with an inert matrix, such as Boron Nitride or cellulose.
  • Use a pellet press and press into a pellet. Mount the pressed pellet into a sample holder.

 Here is a video showing the pellet preparation process. 

If you have liquid samples:

We have several liquid cells of various thicknesses and geometries that you can use, based on your sample compositions.The thickness of the sample that will be in the beam is the most important aspect to be considered. 

 https://henke.lbl.gov/optical_constants/ is a useful website to estimate transmission through liquids, capillary walls (if your samples are to be measured in a capillary), air absorption, etc.

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