Crawford Scientific
Javascript DHTML Drop Down Menu Powered by dhtml-menu-builder.com
 
  Product Information
  Parts and Pricing
you’re in > Products > Manufacturers > Tosoh > TSK-GEL OCTADECYL PHENYL
 

TSK-GEL Octadecyl-NPR, TSK-GEL -2PW, TSK-GEL Octadecyl-4PW,
TSK-GEL Phenyl-5PW RP Columns

These columns are p olymer-based RPC columns are chemically stable at pH 2-12, allowing operation at basic pH where silica-based columns have limited chemical stability. The highlights are:

  • Polymer-based TSK-GEL RPC columns can be cleaned and impurities removed by using either strong acid or base.
  • Polymer-based TSK-GEL RPC columns are available packed with nonporous resins (NPR) or with porous resins of various pore sizes. The proper column to use is selected based on sample MW or application.
  • 2.5 μm particle size TSKgel Octadecyl-NPR resin features fast kinetics resulting in high column efficiency and quantitative protein recovery at sub-microgram loads.
  • TSKgel Octadecyl-2PW is based on 5 μm particle size G2000PW resin with 125 Å pores.
    TSKgel Octadecyl-4PW is based on 7 μm particle size G4000PW resin, which contains 500 Å pores.
  • TSKgel Phenyl-5PW RP is based on 10 μm particle size G5000PW resin, which has an average pore size of 1000 Å.
  • In comparison with the Phenyl-5PW packing material used in HIC, the greater level of hydrophobicity in TSKgel Phenyl- 5PW RP makes this material more suitable for use in RPC.
 
 
Applications
 
TSK-GEL Octadecyl-NPR
  • High efficiency purification of proteins and peptides at sub-microgram loads
  • Nonporous particles are stable to higher pressures than porous particles
  • Improved recovery at low sample concentration over traditional porous resins
 
TSK-GEL Octadecyl-2PW
  • For analyzing small MW pharmaceutical compounds at basic pH
  • Faster analysis than competitive polymeric reversed phase packings
 
TSK-GEL Octadecyl-4PW
  • Recommended for peptides and small proteins
 
TSK-GEL Phenyl-5PW RP
  • Ideal for the separation of proteins, including high MW
  • Able to handle high loads (high capacity)

Description
ID (mm)
Length (cm)
Particule Size (μm)
Number Theoretical Plates

Flow Rate (mL/min)

Max Pressure Drop (kg/cm2)
Part #
Range Max
Stainless steel columns
Octadecyl-NPR nonporous
4.6
3.5
2.5
≥ 1,000
1.0-1.5
1.6
200
14005

Octadecyl-2PW
(100 - 200 Å)

2.0
15.0
5
≥ 5,000
0.07-0.11
0.14
70
18754
Octadecyl-2PW (100 - 200 Å)
4.6
15.0
5
≥ 6,000
0.4-0.6
1.2
100
17500
Octadecyl-2PW (100 - 200 Å)
6.0
15.0
5
≥ 6,000
0.5-1.0
1.5
100
17501
                 

Octadecyl-4PW
(500 Å)

2.0
15.0
7
≥ 2,000
0.08-0.17
0.22
100
18755
Octadecyl-4PW (500 Å)
4.6
15.0
7
≥ 2,000
0.5-1.0
1.2
120
13351

Octadecyl-4PW
(500 Å)

21.5
15.0
13
≥ 2,000
3.0-6.0
8.0
35
16257
Octadecyl-4PW (500 Å)
55.0
20.0
20
≥ 1,700
30.0-50.0
60.0
5
16258
                 
Phenyl-5PW RP, 1000 Å
2.0
15.0
7
≥ 400
0.05-0.10
0.12
10
18756
Phenyl-5PW RP, 1000 Å
4.6
15.0
7
≥ 500
0.50-1.0
1.2
30
08403
Phenyl-5PW RP, 1000 Å
21.5
15.0
13
≥ 1,000
6.0-8.0
8.0
30
16260
Phenyl-5PW RP, 1000 Å
55.0
20.0
20
≥ 700
     
16261
Glass columns
Phenyl-5PW RP, 1000 Å
5.0
5.0
10
≥ 400
0.50-1.0 1.2 20
14006
Phenyl-5PW RP, 1000 Å
8.0
7.5
10
≥ 700
1.0-2.0 2.5 20
14007
                 
Guard column products
Phenyl-5PW 2.0 1.0 10 Cartridge, pk 3 for p/n 18756
42159
Phenyl-5PW 3.2 1.5 10 Cartridge, pk 3 for p/n 08043
19007
Phenyl-5PW 45.0 5.0 20 Guard column for p/n 16261
16262
Phenyl-5PW    

20

Guardgel Kit, Glass for p/n 14006 and 14007
14022
           
Octadecyl-2PW 2.0 1.0 5 Cartridge, pk 3 for p/n 18754
42161
Octadecyl-2PW 4.6 1.0 5 Guard column for p/n 17500
17502
Octadecyl-2PW 6.0 1.0 5 Guard column for p/n 17501
17503
           
Octadecyl-4PW 2.0 1.0 7 Cartridge, pk 3 for p/n 18755
17502
Octadecyl-4PW 3.2 1.5 7 Cartridge, pk 3 for p/n 13351
17503
Octadecyl-4PW    

13

Guardgel Kit, Glass for p/n 16257
16749
Octadecyl-4PW 45.0 5.0 20 Cartridge, pk 3 for p/n 16258
16259
Cartridge holder For 2.0 mm ID Guard cartridges
19308
Cartridge holder For 4.0 mm ID Guard cartridges
18206
 

 

 
  

 

 

 

 

Mtop


 
 
©Crawford Scientific 2010