Silica G TLC Plates
Excellent Separation Efficiency for a Broad Range of Substances
Silica G TLC Plates are made using an unmodified silica gel 60Å and a binder system which provides for adherence to the substrate. The binder consists of Gypsum (CaSO4) and a polymer which yields a soft layer.
Advantages of Silica G TLC Plates:
- Excellent organic solvent resistance
- Can be used with aggressive visualization reagents
- For both normal and reversed phase modes
- Easily remove compounds with a scraper blade

Silica G TLC Plates Specifications:
- Silica Gel Technical specifications:
- Mean pore size: 60 Å
- Specific surface area (BET): ~ 500 m2/g
- Specific pore volume: 0.75 mL/g
- Particle size range: 5-17 μm (analytical)
- Particle size range: 5-50 μm (preparative)
- Substrates
- Glass or polyester (plastic)
- Layer thicknesses
- Analytical
- 250μm for the glass backing
- 200μm for the plastic backing
- Preparative
- 500μm, 1000μm, 2000μm for the glass backing
- Analytical
- Plate dimensions
-
- Plates are available in various pre-cut sizes
Glass Backed w/UV254
Catalog No. | Description | Price (USD) |
---|---|---|
1615126 | Silica G TLC Plates, w/UV254, glass backed, 250um, 20x20cm, 25/pk | ![]() |
1615137 | Silica G TLC Plates, w/UV254, glass backed, 250um, 10x20cm, 50/pk | ![]() |
1615156 | Silica G TLC Plates, w/UV254, glass backed, 250um, 10x10cm, 25/pk | ![]() |
1615148 | Silica G TLC Plates, w/UV254, glass backed, 250um, 5x20cm, 100/pk | ![]() |
1615169 | Silica G TLC Plates, w/UV254, glass backed, 250um, 5x10cm, 200/pk | ![]() |
1615167 | Silica G TLC Plates, w/UV254, glass backed, 250um, 5x10cm, 50/pk | ![]() |
16151AB | Silica G TLC Plates, w/UV254, glass backed, 250um, 2.5x10cm, 400/pk | ![]() |
16151A8 | Silica G TLC Plates, w/UV254, glass backed, 250um, 2.5x10cm, 100/pk | ![]() |
1615190 | Silica G TLC Plates, w/UV254, glass backed, 250um, 2.5x7.5cm, 500/pk | ![]() |
1615198 | Silica G TLC Plates, w/UV254, glass backed, 250um, 2.5x7.5cm, 100/pk | ![]() |
Glass Backed
Catalog No. | Description | Price (USD) |
---|---|---|
1615026 | Silica G TLC Plates, glass backed, 250um, 20x20cm, 25/pk | ![]() |
1615037 | Silica G TLC Plates, glass backed, 250um, 10x20cm, 50/pk | ![]() |
1615048 | Silica G TLC Plates, glass backed, 250um, 5x20cm, 100/pk | ![]() |
1615067 | Silica G TLC Plates, glass backed, 250um, 5x10cm, 50/pk | ![]() |
1615069 | Silica G TLC Plates, glass backed, 250um, 5x10cm, 200/pk | ![]() |
Polyester Backed w/UV254
Catalog No. | Description | Price (USD) |
---|---|---|
1624116 | Silica G TLC Plates, w/UV254, polyester backed, 200um, 40x20cm, 25/pk | ![]() |
1624126 | Silica G TLC Plates, w/UV254, polyester backed, 200um, 20x20cm, 25/pk | ![]() |
1624147 | Silica G TLC Plates, w/UV254, polyester backed, 200um, 5x20cm, 50/pk | ![]() |
1624187 | Silica G TLC Plates, w/UV254, polyester backed, 200um, 4x8cm, 50/pk | ![]() |
1624199 | Silica G TLC Plates, w/UV254, polyester backed, 200um, 2.5x7.5cm, 200/pk | ![]() |
Polyester Backed
Catalog No. | Description | Price (USD) |
---|---|---|
1624026 | Silica G TLC Plates, polyester backed, 200um, 20x20cm 25/pk | ![]() |
1624047 | Silica G TLC Plates, polyester backed, 200um, 5x20cm 50/pk | ![]() |
1624087 | Silica G TLC Plates, polyester backed, 200um, 4x8cm 50/pk | ![]() |
1624099 | Silica G TLC Plates, polyester backed, 200um, 2.5x7.5cm 200/pk | ![]() |
Prep w/UV254
Catalog No. | Description | Price (USD) |
---|---|---|
1616125 | Silica G Prep TLC Plates, w/UV254, glass backed, 20x20cm, 500um, 20/pk | ![]() |
1617124 | Silica G Prep TLC Plates, w/UV254, glass backed, 20x20cm, 1000um, 15/pk | ![]() |
1618123 | Silica G Prep TLC Plates, w/UV254, glass backed, 20x20cm, 2000um, 12/pk | ![]() |
Prep
Catalog No. | Description | Price (USD) |
---|---|---|
1616025 | Silica G Prep TLC Plates, glass backed, 20x20cm, 500um, 20/pk | ![]() |
1617024 | Silica G Prep TLC Plates, glass backed, 20x20cm, 1000um, 15/pk | ![]() |
1618023 | Silica G Prep TLC Plates, glass backed, 20x20cm, 2000um, 12/pk | ![]() |
To use Silica G TLC plates, a small sample of the mixture to be separated is applied to the plate as a thin line near the bottom of the plate. The plate is then placed in a solvent or solvent mixture (the mobile phase), which moves up the plate by capillary action. As the solvent moves up the plate, it dissolves and carries the compounds in the sample with it. The compounds in the sample then move at different rates up the plate depending on their relative affinity for the stationary phase (silica gel) and the mobile phase (solvent). This separation of the compounds based on their relative affinities is called chromatography.
After the solvent has moved up the plate to the desired distance, the plate is removed from the solvent and allowed to dry. The separated compounds will appear as distinct bands on the plate, with each band corresponding to a different compound in the sample. The position and intensity of the bands can then be used to identify and quantify the compounds in the sample.