InertCap GC columns from GL Sciences are an excellent alternative to Trajan GC columns with a wide selection of compatible siloxane phases featuring high-inertness and ultra-low bleed. Get better resolution for gas chromatography.
InertCap GC columns from GL Sciences are an excellent alternative to Trajan GC columns with a wide selection of compatible siloxane phases featuring high-inertness and ultra-low bleed. Get better resolution for gas chromatography.
High Inertness
GL Sciences᾽ proprietary inert processing technology completely eliminates residues of metal, halide, and silanol which are in the column's inner surface. It is possible to obtain excellent symmetry peaks for polar, basic, acidic compounds and metal ligands.
Ultra Low Bleed
Based on superior technologies for cross-linking of stationary phases and surface deactivation of fused silica, InertCap GC columns for GC/MS analysis offers technologies with ultra-low bleed.
Quality
InertCap Capillary GC columns are manufactured and shipped under strict quality control at the GL Science factory, Japan, in accordance with ISO9001 quality certification. InertCap is tested by standard samples which include high adsorption compounds.
For more information, visit InertCap
Recommended GL Sciences equivalent for Trajan BPX1
InertCap 5
Low polarity 5% diphenyl – 95% dimethylpolysiloxane column. InertCap 5 is an optimal first choice column for a variety of general analyses such as pesticides and volatile compounds etc.
Recommended GL Sciences equivalent for Trajan BP5
InertCap 1MS
Non-polar column bonded with 100% dimethylpolysiloxane. Samples elute in order of low boiling points. Designed for GC/MS, InertCap 1MS delivers high inertness and ultra low bleed.
Recommended GL Sciences equivalent for Trajan BP10 (1701)
InertCap 1701
Low polarity 5% diphenyl – 95% dimethylpolysiloxane column. InertCap 5 is an optimal first choice column for a variety of general analyses such as pesticides and volatile compounds etc.
Trajan | Phase | USP Code | InertCap |
BPX1 | 100% Dimethylpolysiloxane | G1, G2, G38 | InertCap 1MS |
BP1 | 100% Dimethylpolysiloxane | G1, G2, G38 | InertCap 1 |
BP5ms | 5% Diphenyl (equiv.) - Dimethylpolysilphenylene siloxane | G27, G36 | |
BPX5 | 5 % Diphenyl - 95 % Dimethylpolysiloxane | G27, G36 | |
BP5 | 5 % Diphenyl - 95 % Dimethylpolysiloxane | G27, G36 | InertCap 5 |
BP624 | 6 % Cyanopropylphenyl - 94 % Dimethylpolysiloxane | G43 | InertCap 624MS |
BP624 | 6 % Cyanopropylphenyl - 94 % Dimethylpolysiloxane | G43 | InertCap 624 |
BPX35 | 35% Diphenyl(equiv.) - 65% Dimethylpolysiloxane | G42 | InertCap 35MS |
BPX35 | 35% Diphenyl - 65% Dimethylpolysiloxane | G42 | InertCap 35 |
BP10 (1701) | 14% Cyanopropylphenyl - 86% Dimethylpolysiloxane | G46 | |
BP10 (1701) | 14% Cyanopropylphenyl - 86% Dimethylpolysiloxane | G46 | InertCap 1701 |
BPX50 | 50 % Diphenyl(equiv.) - 50 % Dimethylsilphenylene Siloxane | G3 | InertCap 17MS/Sil |
BPX50 | 50% Diphenyl - 50% Dimethylpolysiloxane | G3 | InertCap 17MS |
BP225 | 50 % Cyanopropylmethyl - 50 % Phenylmethylpolysiloxane | G7, G19 | InertCap 225 |
BP20 (WAX) | Polyethylene Glycol(PEG) | G14, G15, G16, G20, G39, G47 | |
BP20 (WAX) | Polyethylene Glycol(PEG) | G14, G15, G16, G20, G39, G47 | InertCap WAX |
Solgel WAX | Polyethylene Glycol(PEG) | G14, G15, G16, G20, G39, G47 | |
BP21 (FFAP) | Nitroterephthalic acid modified Polyethylene Glycol | G35 | InertCap FFAP |
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