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  • 产物图
  • 定货信息
  • 产物描写
  • ET10-003
    Exsil Pure 120 Si, 10µm (USP-L3)
  • ET5-003
    Exsil Pure 120 Si, 5µm (USP-L3)
  • ET3-003
    Exsil Pure 120 Si, 3µm (USP-L3)
  • ET10-001-P
    Exsil Pure 120 RP18, 10µm Prep (USP-L1)
  • ET7-001
    Exsil Pure 120 RP18, 7µm Prep (USP-L1)
  • ET10-001
    Exsil Pure 120 RP18, 10µm (USP-L1)
  • ET5-001
    Exsil Pure 120 RP18, 5µm (USP-L1)
  • ET3-001
    Exsil Pure 120 RP18, 3µm (USP-L1)
  • ET10-P01
    Exsil Pure 120 Paragon C18, 10µm (USP-L1)
  • ET5-P01
    Exsil Pure 120 Paragon C18, 5µm (USP-L1)
  • ET3-P01
    Exsil Pure 120 Paragon C18, 3µm (USP-L1)
  • ET10-C01
    Exsil Pure 120 C18MS, 10µm (USP-L1)
  • ET5-C01
    Exsil Pure 120 C18MS, 5µm (USP-L1)
  • ET3-C01
    Exsil Pure 120 C18MS, 3µm (USP-L1)
  • ET10-007
    Exsil Pure 120 C8, 10µm (USP-L7)
  • ET5-007
    Exsil Pure 120 C8, 5µm (USP-L7)
  • ET4-007
    Exsil Pure 120 C8, 3.5µm (USP-L7)
  • ET3-007
    Exsil Pure 120 C8, 3µm (USP-L7)
  • ET10-008
    Exsil Pure 120 Amino, 10µm (USP-L8)
  • ET5-008
    Exsil Pure 120 Amino, 5µm (USP-L8)
  • ET3-008
    Exsil Pure 120 Amino, 3µm (USP-L8)
  • ET10-010
    Exsil Pure 120 Nitrile, 10µm (USP-L10)
  • ET5-010
    Exsil Pure 120 Nitrile, 5µm (USP-L10)
  • ET3-010
    Exsil Pure 120 Nitrile, 3µm (USP-L10)
  • ET10-011
    Exsil Pure 120 Phenyl, 10µm (USP-L11)
  • ET5-011
    Exsil Pure 120 Phenyl, 5µm (USP-L11)
  • ET3-011
    Exsil Pure 120 Phenyl, 3µm (USP-L11)
  • ET10-009
    Exsil Pure 120 SCX, 10µm (USP-L9)
  • ET5-009
    Exsil Pure 120 SCX, 5µm (USP-L9)
  • ET3-009
    Exsil Pure 120 SCX, 3µm (USP-L9)
  • ET10-014
    Exsil Pure 120 SAX, 10µm (USP-L14)
  • ET5-014
    Exsil Pure 120 SAX, 5µm (USP-L14)
  • ET3-014
    Exsil Pure 120 SAX, 3µm (USP-L14)
  • ET10-013
    Exsil Pure 120 C1 (TMS), 10µm (USP-L13)
  • ET5-013
    Exsil Pure 120 C1 (TMS), 5µm (USP-L13)
  • ET3-013
    Exsil Pure 120 C1 (TMS), 3µm (USP-L13)
  • ET5-043
    Exsil Pure 120 PFP, 5µm (USP-L43)
  • ET5-E43
    Exsil Pure 120 PFP (2), 5µm (USP-L43)
  • ET3-E43
    Exsil Pure 120 PFP (2), 3µm (USP-L43)
  • ET10-068
    Exsil Pure 120 ALKAM, 10µm (USP-L68)
  • ET5-068
    Exsil Pure 120 ALKAM, 5µm (USP-L68)
  • ET3-068
    Exsil Pure 120 ALKAM, 3µm (USP-L68)
  • ET10-NL1
    Exsil Pure 120 Fluoro, 10µm
  • ET5-NL1
    Exsil Pure 120 Fluoro, 5µm
  • ET5-P08
    Exsil Pure 120 Phenyl-Amino, 5µm
  • ET5-P09
    Exsil Pure 120 Phenyl-SCX, 5µm
  • ET10-R01
    Exsil Pure 120 PolaRP, 10µm
  • ET5-R01
    Exsil Pure 120 PolaRP, 5µm
  • ET3-R01
    Exsil Pure 120 PolaRP, 3µm
  • ET5-114
    Exsil Pure 120 ZIK-HILIC, 5µm
  • EM10-001
    Exsil Pure 300 C18, 10µm (USP-L1)
  • EM5-001
    Exsil Pure 300 C18, 5µm (USP-L1)
  • EM3-001
    Exsil Pure 300 C18, 3µm (USP-L1)
  • EM5-026
    Exsil Pure 300 C4, 5µm (USP-L26)
  • EK10-001
    Exsil Pure 500 RP18, 10µm (USP-L1)
  • EK5-001
    Exsil Pure 500 RP18, 5µm (USP-L1)
  • EK3-001
    Exsil Pure 500 RP18, 3µm (USP-L1)
  • ET5-E11
    Exsil Pure HS Phenyl-Ether, 5µm
  • 产物概况:

    Purity:                             Fe, Al, Ti, Na  < 10 ug/g total

    Pore Diameter:                120 A

    Pore Volume:                   0.7 ml/g

    Surface Area:                  230 m2/g,   120 m2/ml

    Particle size:                    1.5, 3, 5, 7 and 10 µm


    Exsil Pure C18MS

    The pharmaceutical industry is a major user of LC-MS and their interest centres on basic compounds. The MS sensitivity is increased by operating at high organic content and this has led to an interest in operation at neutral and high pH which increases the retention of bases allowing the use of high organic content mobile phases. Stable products with low bleed rates and capable of giving high e📖fficiency separations are required. In addition, products should be capable of operating with volatile buffers and maximising the retention of bases.

     

    Conventional reversed phase media provide low bleed and good stability but the peak shape of bases at higher pH can be a problem. Pola🎃r embedded phases give better peak shape at neutral and high pH but ofteꦫn suffer from bleed. They invariably give lower retention than standard reversed phase media and need lower organic content mobile phases which are opposite to the customer requirements.

    •       High Polarity:                                Different selectivity to current phasꦐes.

    •       High Base Retention:               &ꦑnbsp;   Uses high % or🍸ganic: aids MS detection

    •       Compatible with MS buffers:        Good 🐻with volatile buffers

    •       High Stability:     &nbs൩p;                         No embedded phase to limit stability

    •       Low MS bleed:  ♏      ﷽                     Aids MS Detection

    •       Acids, Bases, Chelates:        🌄       All the benefits of pure silica

    •       100% Aqueous Stability:              Resists phase collapse

    Exsil Pure RP18

    In recent years, high purity silicas bonded with monofunctional C18 and fully end capped have become the standard phase for difficult analyses. The success of this approach is evidenced by a large number of these phases available. They do have some drawbacks; these being primarily tailing with some bases at neutral pH and a high degree of similarity in se🐭lectivity. Despite these drawbacks, such phases are popular and we have produced su𝓰ch a phase on Exsil Pure.

    •       High Purity Silica:           Good chromatography of acids 🍸and b๊ases

    •       High efficiency:               Typically✨ 85-105,000 plates/m for 5mm

    •       Cost effective: &nb⛄sp;               High performance at low cos✅t

    •       Reproducible:   &nbs🅘p; &n🐎bsp;            Typical Exmere reliability

    •       High pH Stability:             pH 12 clean in situ

    Exsil Pure Paragon C18

    Exsil reversed phase silicas have an outstanding record for reproducibility and are available in a wide range that offers alternative selectivities to conventional reversed phase media. However due to a continuing demand for a phase which combines conventional selectivity with Exsil performance we have drawn on our experience of over 20 years of phase development to produce.

    •       High Purity Sil𓃲ica:                   🐭  Good chromatography of acids, bases and neutrals

    •       High efficiency:                         Typically 100 000 🎃plates/m for 5µm

    •       Cost effective:          ♎                 High performance at lower cost

    •       Reproducible:                           Typical Exmere relia💛bility

    •       Conventional selectivity:           Direct alternative to ma𒉰ny RP phases

    •       120A in 3,5 and 10μm:             Ideal for small t𒊎o medium sized molecuꦗles.

    •       Carbon loading:        &nb💟sp;               Very high alkyl loaded (pH stable up t💖o 11)