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Sample Travels in Chromatography Simplified Revision Notes

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Sample Travels in Chromatography

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Sample Travels in Chromatography

The distance a sample travels in chromatography depends on several key factors, which are essential to understand for effective separation and analysis. Here are the factors explained concisely:

Size of Molecules:

  • Larger molecules within the mixture take longer to migrate through the chromatography paper or TLC (thin-layer chromatography) plate.
  • Smaller molecules are more mobile and move a greater distance in a given time.

Polarity of Molecules:

  • The polarity (charge distribution) of molecules plays a significant role.
  • Polar molecules are attracted to polar solvents, leading them to travel further if a polar solvent is used in the chromatography.
  • Non-polar molecules tend to be more attracted to the stationary phase, which is usually the paper or stationary layer in TLC.

Solvent Selection:

  • The choice of solvent greatly influences the separation process.
  • For example, if a mixture contains both very polar and non-polar molecules and a polar solvent like ethanol is used, the polar molecules move rapidly up the filter paper.
  • Less polar molecules are more attracted to the stationary phase (paper) and move at a slower rate.

Comparing Distances:

  • To analyse the results effectively, scientists compare the distance travelled by sample spots on the chromatography medium (paper or TLC plate) to the overall distance the solvent has moved.
  • These comparisons and measurements provide crucial information about the composition of the mixture and the relative affinities of its components for the stationary and mobile phases.
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