Essential Concepts & Key Facts
High-yield conceptual summaries for competitive exams and rapid revision.
- Chromatography is an analytical and preparative technique used to separate, identify, and quantify the individual chemical constituents of a mixture.
- The method was invented between 1900 and 1906 by Russian-Italian botanist Mikhail Tsvet, who used it to separate green plant leaf pigments into distinct colored bands.
- The word 'chromatography' originates from the Greek words 'chroma' (color) and 'graphein' (to write), though modern techniques separate both colored and colorless compounds.
- All chromatographic separations require two immiscible phases: a Stationary Phase (which remains fixed in place) and a Mobile Phase (which flows across the stationary medium).
- Separation is governed by the distribution coefficient (partition coefficient), which describes how a solute equilibrates between the mobile and stationary phases.
- Substances with high affinity for the stationary phase move slowly, while substances with high solubility in the mobile phase elute rapidly.
- Paper Chromatography is a planar method where specialized cellulose paper acts as a stationary support holding bound water, with an organic solvent acting as the mobile phase.
- Thin-Layer Chromatography (TLC) utilizes a thin, uniform coating of adsorbent material (typically silica gel or alumina) spread on a rigid glass, plastic, or aluminum backing.
- The Retention Factor (Rf) in planar chromatography is calculated as: Rf = (Distance traveled by substance) / (Distance traveled by solvent front).
- Because the solvent front always travels farther than the solute, the R_f value is a dimensionless number that strictly ranges between 0.0 and 1.0.
- Gas Chromatography (GC) separates volatile compounds by vaporizing them and carrying them with an inert mobile carrier gas (helium, nitrogen, or argon) through a heated capillary column.
- In Gas Chromatography, the stationary phase is typically a microscopic liquid polymer film coating the inner wall of a long fused-silica capillary tube.
- High-Performance Liquid Chromatography (HPLC) utilizes high-pressure mechanical pumps (up to 400–600 bar) to force liquid mobile solvents through columns packed with micro-particulate silica.
- In Normal-Phase Chromatography, the stationary phase is polar (e.g., silica gel) and the mobile phase is non-polar (e.g., hexane), meaning non-polar compounds elute first.
- In Reversed-Phase HPLC (RP-HPLC), the stationary phase is non-polar (e.g., C18-modified hydrocarbon silica) and the mobile phase is polar (water-acetonitrile), meaning polar compounds elute first.
- Ion-Exchange Chromatography separates charged biomolecules (amino acids, proteins, nucleotides) based on electrostatic interactions with charged functional groups on the stationary resin.
- Size-Exclusion Chromatography (gel filtration) separates molecules purely by physical size, with larger molecules bypassing porous gel beads to elute first.
- Affinity Chromatography exploits highly specific biological lock-and-key interactions (e.g., antigen-antibody, enzyme-substrate, receptor-ligand) to purify recombinant proteins.
- A chromatogram is the detector output display plotting signal intensity against time, where peak retention time (t_R) identifies compounds and peak area measures quantity.
- Chromatography is essential in pharmaceutical quality control, forensic toxicology, environmental pollutant detection, and anti-doping testing under World Anti-Doping Agency (WADA) protocols.
Related Knowledge Topics to Discover
Looking for more specific GK questions?
Search across all 0 What Is Chromatography and How Does It Separate Different Substances? questions or browse 52,789+ verified questions across 65 domains.