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Original Shimadzu Inertsil DIOL liquid chromatography column

NegotiableUpdate on 04/03
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Overview
The original Shimadzu Inertsil DIOL liquid chromatography column is a chromatographic column with a diol group (dihydroxypropyl) bonded to silica gel. In the normal phase mode, due to its stronger selectivity for hydrophilic compounds compared to silica gel chromatography columns, it is possible to achieve the mutual separation of compound groups with similar polarities (Figure 1). In addition, ion repulsion between alkaline and acidic compounds is less likely to occur, enabling stable positive phase analysis. Moreover, it can be cleaned with 100% aqueous eluent and has a larger sample loading capacity than silica gel columns, making it suitable as a chromatographic column for normal phase analysis.
Product Details

Original Shimadzu Inertsil DIOL liquid chromatography column product description

● Matrix 3 series high-purity spherical silicone gel
● Particle size : 3μm, 5μm
● Surface area : 450m2/g
● Micro pore diameter : 100Å (10nm)
● Micropore volume : 1.05mL/g
Chemical bonding groups : Diol group (dihydroxypropyl)
● End end sealing : None
● Carbon content : 20%
● USP number : L20

Original Shimadzu Inertsil DIOL liquid chromatography column

analytical column
Particle size: 3 μ m Length/Inner Diameter 1.0mm 1.5mm - -
33mm 5020-86531 5020-86541 - -
50mm 5020-86532 5020-86542 - -
75mm 5020-86533 5020-86543 - -
100mm 5020-86534 5020-86544 - -
150mm 5020-86535 5020-86545 - -
250mm 5020-86536 5020-86546 - -
Length/Inner Diameter 2.1mm 3.0mm 4.0mm 4.6mm
33mm 5020-05411 5020-05421 5020-05431 5020-05441
50mm 5020-05412 5020-05422 5020-05432 5020-05442
75mm 5020-05413 5020-05423 5020-05433 5020-05443
100mm 5020-05414 5020-05424 5020-05434 5020-05444
150mm 5020-05415 5020-05425 5020-05435 5020-05445
250mm 5020-05416 5020-05426 5020-05436 5020-05446
Particle size: 5 μ m Length/Inner Diameter 1.0mm 1.5mm - -
33mm 5020-86511 5020-86521 - -
50mm 5020-86512 5020-86522 - -
75mm 5020-86513 5020-86523 - -
100mm 5020-86514 5020-86524 - -
150mm 5020-86515 5020-86525 - -
250mm 5020-86516 5020-86526 - -
Length/Inner Diameter 2.1mm 3.0mm 4.0mm 4.6mm
33mm 5020-05611 5020-05621 5020-05631 5020-05641
50mm 5020-05612 5020-05622 5020-05632 5020-05642
75mm 5020-05613 5020-05623 5020-05633 5020-05643
100mm 5020-05614 5020-05624 5020-05634 5020-05644
150mm 5020-05615 5020-05625 5020-05635 5020-05645
250mm 5020-05616 5020-05626 5020-05636 5020-05646

The standard connector type is 1/16 inch Waters connector screw type. Please consult separately for other types of connectors.

Protection column
target analysis
Inner diameter of chromatographic column
Length Inner diameter Protect the column core
(2)
Protective column set
(2 column cores+1 column sleeve)
Particle size Particle size
3μm 5μm 3μm 5μm
1.0mm 10mm 1.0mm 5020-19223 5020-19222 5020-19273 5020-19272
1.5mm, 2.1mm 1.5mm 5020-19323 5020-19322 5020-19373 5020-19372
2.1mm, 3.0mm 3.0mm 5020-19123 5020-19122 5020-19173 5020-19172
4.0mm, 4.6mm 4.0mm 5020-19023 5020-19022 5020-19073 5020-19072
5020-19072 20mm 3.0mm 5020-19523 5020-19522 5020-19573 5020-19572
4.0mm, 4.6mm 4.0mm 5020-19423 5020-19422 5020-19473 5020-19472
Protective column sleeve Used for a length of 10mm 5020-08500
Used for a length of 20mm 5020-08550

Note: The connector type is limited to 1/16 inch Waters connector screw type only.

Original Shimadzu Inertsil DIOL liquid chromatography column application

Inertsil Dior is a chromatographic column that bonds a diol group (dihydroxypropyl) onto silica gel. In the normal phase mode, due to its stronger selectivity for hydrophilic compounds compared to silica gel chromatography columns, it is possible to achieve the mutual separation of compound groups with similar polarities (Figure 1). In addition, ion repulsion between alkaline and acidic compounds is less likely to occur, enabling stable positive phase analysis. Moreover, it can be cleaned with 100% aqueous eluent and has a larger sample loading capacity than silica gel columns, making it suitable as a chromatographic column for normal phase analysis.