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HanKing Columns

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HanKing LC Columns

HanKing columns‌ specialize in the research, development, production, and application solutions of HPLC separation materials, focusing on ‌high-purity substrates, precise bonding, and reliable performance‌. Leveraging 3 core technology —‌High-purity spherical silica, Organic hybrid, and Core-shell surface modification‌— We have comprehensive range of stationary phases and columns covering ‌reversed-phase, normal-phase, ion-exchange‌, and other separation modes.

The products deliver ‌broad pH stability, high column efficiency, low bleed, and excellent batch-to-batch consistency‌, providing ‌cost-effective alternatives‌ comparable to leading international brands. They are suitable for various applications including ‌routine analysis, method development, pharmacopeial testing, and quality control‌, serving laboratories in ‌pharmaceuticals, food, environment, chemical, clinical, and life science‌ fields with ‌stable, durable, and highly selective separation solutions‌.

 

Product

Series

Product

Particle Size

µm

Aperture

Å

Specific surface area

m2/g

Carbon

 load

C%

Start 

&

 finish

pH Range

Discription

USP

HanKing

PurBridge

PurBridge C18

1.8

3

5

150

190

16%

Yes

1-12

  • Organic hybrid silicone gel particles
  • Double-end capped
  • Extremely high durability and stability
  • Very suitable for the separation of coordination compounds and basic compounds
  • Tolerable to 100% aqueous phase

L1

HanKing

PurShell

PurShell C18

2.0

90

120

6.5%

Yes

1.5-10

  • Three particle sizes of 2.0, 2.6, and 4.6 µm are available
  • Applicable to a wide pH range
  • Shows good peak shapes for alkaline, acidic, and chelating compounds
  • Low-leakage design can be used for MS and CAD detectors

L1

2.6

90

150

7%

Yes

1.5-10

L1

4.6

90

90

5.5%

Yes

1.5-10

L1

PurShell C18WP

2.6

160

90

5%

Yes

1.5-10

           Large pore column, suitable for peptides separation

L1

PurShell RP-AQ

2.6

160

90

4%

Yes

2-8

  • Bonding C30 functional groups to enhance the retention of polar compounds
  • Tolerates 100% aqueous phase
  • Separation applicable to nucleotides

L62

PurShell C8

2.6

90

150

4.5%

Yes

1.5-9

  • Moderate hydrophobicity
  • High-temperature silicon hydroxyl deactivation technology is more suitable for the separation of alkaline compounds

L7

PurShell Phenyl

5%

Yes

1.5-9

  • Bonded phenylhexyl functional group
  • Seperate aromatic and heterocyclic compounds

L11

PurShell Biphenyl

5%

Yes

1.5-9

  • Bonded biphenyl functional group
  • The unique hydrogen bonding forces cause it 
  •  to exhibit selectivity different from C18 and phenyl.

L11

PurShell PFP

4.5%

TMS

2-8

  • Excellent spatial selectivity
  • Has stronger retention for basic compounds
  • There is a significant difference in selectivity compared with C18.

L43

PurShell PFP&C18

6%

TMS

2-8

  • Bonding PFP and C18 bifunctional groups
  • More hydrophobic than PFP
  • Hydrogen bonding and spatial selectivity are similar to PFP

L43

PurShell HILIC 

Amide

3%

No

2-8

  • Amide functional group bonded with a hydrophilic group.
  • More polar
  • Compared to fully porous, surface porosity can achieve rapid equilibrium
  • Applicable to hydrophilic interaction HILIC mode

L68

PurShell HILIC  

Silica

0%

No

1-5

  • Normal-phase separation based on silanol interactions
  • Can also be used in HILIC mode

L3

HanKing

Super

Super-AQ

3

5

120

340

16%

Yes

2-8

  • Bonded C30 functional group
  • Tolerates 100% aqueous phase
  • Stronger retention ability for highly polar compounds

L62

Super PFP&C18

5

14%

Yes

1.5-9

  • Bonding PFP and C18 dual functional groups
  • More hydrophobic than PFP
  • Hydrogen bond interactions and spatial selectivity are similar to PFP

L43

Super Biphenyl

5

11%

Yes

2-8

  • Bonded biphenyl functional group
  • Unique hydrogen bonding
  • Has different selectivity compared to C18 and phenyl

L43

HanKing

Pur

Pur C18

1.7

3

5

100

315

16%

Yes

2-11

  • Classic C18 column, mainstream choice for 
  • method development

L1

Pur C18-AQ

1.7

3

5

100

315

13%

Yes

2-9

  • Tolerates 100% aqueous phase, suitable for
  •  the separation of hydrophilic compounds

L1

Pur C18 Bio

1.7

3

5

300

90

7%

Yes

1-11

  • 300Å large pore size, suitable for
  •  the separation of peptides and proteins

L1

Pur C8

1.7

3

5

100

315

11%

Yes

2-9

  • Moderate hydrophobicity, suitable for
  •  the separation of peptides and proteins

L7

Pur C8 Bio

1.7

3

5

300

90

5%

Yes

1-9

L7

Pur C4

3

5

100

315

7%

Yes

2-8

  • Compared with C18 and C8, it has lower hydrophobicity, 
  • suitable for the separation of peptides and proteins

L26

Pur C4 Bio

3

5

300

90

3%

Yes

2-8

L26

Pur Phenyl

1.7

3

5

100

315

14%

Yes

2-9

  • Bonded phenylhexyl functional group; suitable for 
  • the separation of aromatic and heterocyclic compounds

L11

Pur CN

3

5

100

315

7%

Yes

2-8

  • Bond cyanide functional groups;
  •  both normal and reversed-phase modes can be used

L10

Pur NH2

3

5

120

300

4%

Yes

2-8

  • Column for carbohydrate analysis

L8

Pur Diol

3

5

100

315

5%

Yes

2-8

  • bonded diol group
  • Normal-phase separation suitable for non-polar solvents
  • Can also be used for hydrophilic interaction (HILIC) mode

L20

Pur Silica

3

5

100

315

0%

Yes

2-8

  • Normal-phase separation based on the action of silanol groups
  • Can also be used in HILIC mode

L3