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Analytical Columns

YMC Triart hybrid struktur

YMC-Triart C8
 

 
 

Particle technology

YMC-Triart is a multi-layered material prepared from well-controlled particle formation technology which is adapted from micro-reactor technology. The recently developed production step results in truly narrow particle and pore size distributions!
With YMC-Triart, challenging pH and high temperature conditions are no longer a limitation to the day-to-day work in laboratories. Most importantly, due to its unique particle composition, a balanced hydrophobicity and silanol activity are achieved which makes YMC-Triart a ”First Choice“ column in method development!

YMC-Triart hybrid structure

 

YMC-Triart hybrid structure, inorganic silane layer, organic silane layer

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Uniform spherical particles

YMC-Triart C18 X-Bridge HILIC
YMC-Triart C18 X-Bridge HIlIC

The new uniform spherical particle support is adopted for YMC-Triart C18. The particle is produced using micro-reactor technology in granulation process. This results in reduction of the back-pressure and leads to more reproducibility in surface modification.


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Low column back-pressure

YMC Triart column pressure (MPa), organic solvent rate (%), Triart C18, MeOH/W, Triart C18, ACN/W, Pro C18, MeOH/W, Pro C18, ACN/W
Column: 5 μm, 150 x 4.6 mm ID
Eluent: acetonitriel/water or methanol/water
Flow rate: 1.0 ml/min
Temperature: 25°C
The revolutionary production technique, adapted from micro-reactor flow technology, produces a multi-layered silcia/organic hybrid stationary phase, with outstanding narrow pore size and particle size distributions which result in low back pressures.

YMC-Triart C18 is designed for use under many conditions. Elution with higher viscosity methanol (compared with acetonitrile), YMC-Triart C18 generates lower pressure (approx 30% lower than with conventional phases).
Application courtesy of YMC Co., Ltd.

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Narrow pore distribution

YMC Triart, Narrow pore distribution, Triart C18 particle, Conventional silica-based particle, X-Bridge HILIC
This figure shows the pore size distributions of some competitive materials. Compared with other products on the market, YMC-Triart C18 shows a narrower distributon which results in sharper peak shapes.

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Improved loadability

Influence of injection volume on peak shapes
solvent for sample
acetonitrile
YMC-Triart C18, Hybrid-silica based C18, Silica-based C18, Peak anomaly at 1.5 µl
injection volume
1.0 µl
1.5 µl
2.0 µl
3.0 µl
Column: 5 µm, 50 x 2.0 or 2.1 mm ID
Eluent: A) water/formic acid (100/0.1)
B) acetonitrile/formic acid (100/0.1)
5% B (0-0.5 min),
5-100% B (0.5-2.5 min)
Flow rate: 0.4 ml/min
Teperature: 40 °C
Detection: UV at 275 nm
OCH2CHCH2NHCH(CH3)2, Propanolol, Varapamil
In order to prevent peak errors, there is the limit to the injection volume when the sample is
injected in high elution solvents (such as acetonitrile). Compared with traditional columns,
more than double the injection volume can injected into YMC-Triart C18 as a result of the
extremely narrow particle size distribution.
Application courtesy of YMC Co., Ltd.

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© 2006 -2013 YMC Europe GMBH

 

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