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HPTLC Plates Nano-SIL CN / UV254 - cyano-modified, 10 x 10 cm

From  Macherey-Nagel
Material: Glass plate with cyano-modied nano silica gel 60, with fluorescence indicator.
Plate format
Layer thickness
Particle size
Pack Qty.


Cyanopropyl modification
Carbon content 5,5 %
Product details

€321.00/Pack Qty. 

excl. VAT. | 25 unit(s) per Pack Qty.

Art. No. 4554.1

Available at short notice
from 6 Pack Qty. €304.95/Pack Qty.
from 24 Pack Qty. €288.90/Pack Qty.
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Product details

Material: Glass plate with cyano-modied nano silica gel 60, with fluorescence indicator.

Cyanopropyl modification
Carbon content 5,5 %


Order of polarity:
silica > DIOL > NH2 > CN > RP-2 > RP-18 W


Normal phase or reversed phase separation modes depending on the polarity of the developing solvent



HPTLC Plates Nano-SIL CN / UV254 - cyano-modified 

Technical Information
Plate format 10 x 10 cm
Layer thickness 0,2 mm
Material Glass plate 
Modification Silica gel with Cyano (CN), nitrile modification 
Fluorescent indicator Yes 
Separation principle Normal phase (NP) 
Phase Nano-SIL CN 
Particle size 2-10 µm
Particle type Fully porous particles (FPP) 
Pore size 60 Å
Pore volume 0,75 ml/g
pH stability 2,0-8,0 
Temperature stability High 
Recommended application(s) Nucleotides, Pesticides, Phenols, Purine derivatives, Reversed phase (RP) and Normal phase (NP), Steroids, Sugars, Vitamins, Xanthines 
HPTLC Plates Nano-SIL CN / UV254 - cyano-modified
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Order No. Plate format Layer thickness Particle size Pack Qty. Price Quantity
4554.1 10 x 10 cm 0,2 mm 2-10 µm 25 unit(s) €321.00
4569.1 10 x 20 cm 0,2 mm 2-10 µm 25 unit(s) €488.00
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Downloads / MSDS

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General information

Further attractive products to complete your chromatography laboratory can be found on our Chromatography page!


Thin Layer Chromatography (TLC)

Although the principle of thin-layer chromatography is more than a century old, it did not make its breakthrough as an analytical method until about 50 years ago.
Thanks to the development of new sorbents and supports, as well as increasing instrumentation and automation, TLC has become a versatile separation method. It is used both in qualitative analysis and in quantitative analysis.
Applications range from simple manual separation processes in classic TLC to automated processes in HPTLC (high performance thin layer chromatography).

Advantages of thin layer chromatography:

  • Higher sample throughput in less time
  • Suitable for screening tests
  • Pilot process for HPLC
  • The ready-to-use TLC layer functions as a data storage device for separation results
  • The separated substances can be used later for further analysis (e.g. IR, MS)
  • By switching the mobile and the stationary phases, the separation process can be optimised quickly and cost-efficient


Certificates of Analysis

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