TLC Products

MilliporeSigma™ TLC Silica Gel 60 F254: 25 Glass plates, 20 x 20cm

Allows analyzation of any substance when combined with suitable mobile phase

Macherey-Nagel™ Glass Laboratory Sprayer

Used as an accessory in thin layer chromatography applications. Macherey-Nagel™ Glass Laboratory Sprayer includes a 100mL, clear glass conical flask with a sprayer-stopper assembly and rubber bulb/tubing.

Macherey-Nagel™ Standard SIL G Silica Layers on Polygram™ polyester sheets

Separate non-volatile mixtures with unmodified standard silica layers for TLC (Thin-Layer Chromatography). Standard SIL G silica layers on Polygram™ polyester sheets come in a variety of sizes. Select fluorescent indicator and choose from a variety of pack sizes.

Macherey-Nagel™ TLC Simultaneous Developing Chamber

Develop multiple TLC plates simultaneously. TLC Simultaneous Developing Chambers  come with a choice of room for either 2 or 5 plates.

Witeg™ Sprayer

Ideal sprayer system for chromatography. Witeg™ Sprayer comes with an Erlenmeyer flask and an aspirator bulb.

Macherey-Nagel™ SIL G-25 Tenside Special Silica Layers for Separation of Surfactant

 Separate surfactants by TLC (Thin-Layer Chromatography).  SIL G-25 Tenside Special Silica Layers for Separation of Surfactant come avallable as glass plates.

Macherey-Nagel™ Standard SIL G Silica Layers on Alugram™ Aluminum Sheets UV254

Separate non-volatile mixtures with unmodified standard silica layers for TLC (Thin-Layer Chromatography).  Standard SIL G Silica Layers on Alugram™ Aluminum Sheets UV254 come in a variety of sizes.

Fungilab™ Fungicrom Separating Chambers (TLC)

Fungicrom Separating Chambers (TLC) are to be used with thin layer chropatography.

Macherey-Nagel™ ALUGRAM™ Alox N/UV254 Aluminum Sheets

Designed for use in thin layer chromatography. Macherey-Nagel™ ALUGRAM™ Alox N/UV254 Aluminum Sheets include aluminum oxide layers and a fluorescent indicator at short-wave UV (254nm). Activating the layers before use is recommended.

Macherey-Nagel™ Standard SIL G Silica Layers on Glass Plates

Separate non-volatile mixtures with unmodified standard silica layers for TLC (Thin-Layer Chromatography). Standard SIL G silica layers on glass plates come in a variety of plate sizes and layer thicknesses. Select a fluorescent indicator and choose from a variety of pack sizes.

Macherey-Nagel™ RP-18 W/UV254 Glass HPTLC Plates

Designed for use in HPTLC. Macherey-Nagel™ RP-18 W/UV254 Glass HPTLC Plates have a layer of modified nano silica with a fluorescent indicator for short-wave UV (254nm). It is wettable with water, acid-resistant and stable at pH 2–10.

Macherey-Nagel™ Alugram™ RP-18 W/UV254 Modified Silica Phase

For use in normal or reverse phase HPTLC. Macherey-Nagel™ Alugram™ RP-18 W/UV254 Modified Silica Phase are aluminum sheets coated with wettable layers of modified nano silica that can be developed with purely organic and organic/aqueous solvents and purely aqueous eluents.

Macherey-Nagel™ Nano-SIL NH2 ALUGRAM™ Aluminum Sheets

Designed for use in high-performance thin layer chromatography (HPTLC). Macherey-Nagel™ Nano-SIL NH2 ALUGRAM™ Aluminum Sheets include amino-modified silica layers and a fluorescent indicator at short-wave UV (254nm).

Macherey-Nagel™ Xtra SIL G Silica Layers on Alugram™ Aluminum Sheets UV254

Separate non-volatile mixtures with unmodified standard silica layers for TLC (Thin-Layer Chromatography). Xtra SIL G Silica Layers on Alugram™ Aluminum Sheets UV254 come in a variety of sizes.

MilliporeSigma™ Silica Gel 60G TLC Plates, Glass Backed

These new TLC silica gel 60G plates are recommended for customers in QA/QC labs using older Ph Eur monograph methods, which require TLC plates with gypsum binder.

Macherey-Nagel™ Adamant™ Unmodified Standard Silica Layers for TLC, UV254

Increase separation efficiency and maximize resolution during TLC (thin-layer chromatography). Adamant™ Unmodified Standard Silica Layers for TLC, UV254, are available on glass plates with an optimized binder system and UV indicator.

MilliporeSigma™ Precoated HPTLC Glass Plates

Smaller size and distribution of HPTLC media yields improved resolution, shorter analysis times, and higher detection sensitivity

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