PerkinElmer Consumables

Item Name | Product Image | Price |
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PerkinElmer 50 mm, 2.1 mm I.D., 2.6 µm Quasar™ SPP PFP LC Column - N930893650 mm, 2.1 mm I.D., 2.6 µm Quasar™ SPP PFP LC Column Quasar SPP PFP LC columns consists of a pentafluorophenyl (PFP), bonded phase which provides - interactions to facilitate alternative selectivity. |
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PerkinElmer 50 mm, 2.1 mm I.D., 3 µm Quasar™ Biphenyl LC Column - N930887250 mm, 2.1 mm I.D., 3 µm Quasar™ Biphenyl LC Column Quasar Biphenyl LC columns ultilise a biphenyl bonded phase which provides - interactions to facilitate alternative selectivity compared to alkyl bonded phases. |
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PerkinElmer 50 mm, 2.1 mm I.D., 3 µm Quasar™ C18 LC Column - N930881350 mm, 2.1 mm I.D., 3 µm Quasar™ C18 LC Column Quasar C18 LC columns, based on ultra high purity silica and manufactured to tight specification, provides high efficiency separations and excellent peak shape for a wide range of compounds. Our... |
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PerkinElmer 50 mm, 2.1 mm I.D., 3 µm Quasar™ Cyano LC Column - N930890750 mm, 2.1 mm I.D., 3 µm Quasar™ Cyano LC Column Quasar Cyano LC columns provide functionality which offers increased dipole interactions for alternative selectivity and a less hydrophobic phase. |
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PerkinElmer 50 mm, 3.0 mm I.D., 1.7 µm Quasar™ C8 LC Column - N930889550 mm, 3.0 mm I.D., 1.7 µm Quasar™ C8 LC Column Quasar C8 LC columns, based on ultra high purity silica and manufactured to tight specification, offer less retention when compared to the C18 phase, due to the lower hydrophobicity. They yield high... |
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PerkinElmer 50 mm, 3.0 mm I.D., 2.6 µm Quasar™ SPP PFP LC Column - N930893350 mm, 3.0 mm I.D., 2.6 µm Quasar™ SPP PFP LC Column Quasar SPP PFP LC columns consists of a pentafluorophenyl (PFP), bonded phase which provides - interactions to facilitate alternative selectivity. |
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PerkinElmer 50 mm, 3.0 mm I.D., 3 µm Quasar™ AQ LC Column - N930884950 mm, 3.0 mm I.D., 3 µm Quasar™ AQ LC Column Quasar AQ LC columns benefit from no phase collapse even in 100% aqueous mobile phase conditions and the polar end capping aids in retention of more polar compounds. |
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PerkinElmer 50 mm, 3.0 mm I.D., 3 µm Quasar™ Biphenyl LC Column - N930886950 mm, 3.0 mm I.D., 3 µm Quasar™ Biphenyl LC Column Quasar Biphenyl LC columns ultilise a biphenyl bonded phase which provides - interactions to facilitate alternative selectivity compared to alkyl bonded phases. |
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PerkinElmer 50 mm, 3.0 mm I.D., 3 µm Quasar™ HILIC LC Column - N930882950 mm, 3.0 mm I.D., 3 µm Quasar™ HILIC LC Column Quasar HILIC LC columns benefit from a bonded diol phase for more reproducible HILIC separations. Lower water content mobile phases can be routinely used which offers increased MS sensitivity. |
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PerkinElmer 50 mm, 4.6 mm I.D., 1.7 µm Quasar™ AQ LC Column - N930885450 mm, 4.6 mm I.D., 1.7 µm Quasar™ AQ LC Column Quasar AQ LC columns benefit from no phase collapse even in 100% aqueous mobile phase conditions and the polar end capping aids in retention of more polar compounds. |
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PerkinElmer 50 mm, 4.6 mm I.D., 1.7 µm Quasar™ Biphenyl LC Column - N930887450 mm, 4.6 mm I.D., 1.7 µm Quasar™ Biphenyl LC Column Quasar Biphenyl LC columns ultilise a biphenyl bonded phase which provides - interactions to facilitate alternative selectivity compared to alkyl bonded phases. |
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PerkinElmer 50 mm, 4.6 mm I.D., 1.7 µm Quasar™ C18 LC Column - N930881550 mm, 4.6 mm I.D., 1.7 µm Quasar™ C18 LC Column Quasar C18 LC columns, based on ultra high purity silica and manufactured to tight specification, provides high efficiency separations and excellent peak shape for a wide range of compounds. Our... |
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PerkinElmer 50 mm, 4.6 mm I.D., 1.7 µm Quasar™ HILIC LC Column - N930883450 mm, 4.6 mm I.D., 1.7 µm Quasar™ HILIC LC Column Quasar HILIC LC columns benefit from a bonded diol phase for more reproducible HILIC separations. Lower water content mobile phases can be routinely used which offers increased MS sensitivity. |
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PerkinElmer 50 mm, 4.6 mm I.D., 2.6 µm Quasar™ SPP C18 LC Column - N930891250 mm, 4.6 mm I.D., 2.6 µm Quasar™ SPP C18 LC Column HILIC Quasar SPP HILIC LC columns encompass a uniform surface for improved reproducibility and yield excellent peak shapes for a wide range of compounds, including basic analytes. |
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PerkinElmer 50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CC4 LC Columns - 115151-CC450 mm, 4.6 mm I.D., 3 µm ChromegaChiral CC4 LC Columns ChromegaChiral™ CC4 (cellulose tris(4-chloro-3-methylphenylcarbamate)) is another new product for high resolution chiral separations based on a new halogenated carbohydrate based chiral... |
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PerkinElmer 50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCA LC Columns - 115151-CCA50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCA LC Columns A polysaccharide coated chiral stationary phase and columns which are produced using a unique production process of coating the proven chiral selector, tris-(3,5-di-methylphenyl) carbamate... |
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PerkinElmer 50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCC LC Columns - 115151-CCC50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCC LC Columns A modified cellulose including the combination of 3-chloro-4-methylphenylcarbamate and 3,5-dichlorophenylcarbamate bonding groups coated on high purity, high performance spherical silica... |
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PerkinElmer 50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCJ LC Columns - 115151-CCJ50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCJ LC Columns ChromegaChiral™ CCJ (cellulose tris(4-methylbenzoate)) is a new product for high resolution chiral separations based on a new halogenated carbohydrate based chiral stationary phase. Similar... |
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PerkinElmer 50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCO F2 LC Columns - 115151-CCO-F250 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCO F2 LC Columns ChromegaChiral™ CCO F2 is a tris(2-Fluoro 5-methylphenylcarbamate) cellulose phase which can be used in SFC or HPLC. The addition of a fluorine atom into a phenyl carbamate cellulose... |
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PerkinElmer 50 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCO F4 LC Columns - 115151-CCO-F450 mm, 4.6 mm I.D., 3 µm ChromegaChiral CCO F4 LC Columns ChromegaChiral™ CCO F4 is a tris(4-Fluoro 3-methylphenylcarbamate) cellulose phase which can be used in SFC or HPLC. The addition of a fluorine atom into a phenyl carbamate cellulose... |
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