• New UHPLC Platform Transforms Chromatography

Chromatography

New UHPLC Platform Transforms Chromatography

Oct 28 2014

Thermo Fisher Scientific has unveiled a new high performance liquid chromatography system designed from the ground up to provide new levels of performance, productivity and usability when used as a standalone system or with the latest mass spectrometers.

The new Thermo Scientific Vanquish UHPLC looks different from standard UHPLC systems, and there are benefits to its clean design. The monolithic case contains an instrument that combines the ruggedness of an integrated system with the flexibility and serviceability of a modular system. Vanquish stands about 25% lower than comparable modular stacks for safety and convenience in the laboratory.

  

Central to the Vanquish concept is the new family of Thermo Scientific Accucore Vanquish UHPLC columns, specially designed to optimise performance. The new columns feature 1.5 µm solid core particles utilising Core Enhanced Technology to take full advantage of the Vanquish system’s 1500 bar (22,000 psi) maximum pump pressure and flow rate up to 5mL/min for ultra-short diffusion path lengths and highly efficient separations.

For high sample throughput applications, the optional Thermo Scientific Vanquish Charger is a fully integrated robotic module that provides unattended, environmentally controlled sample management and loading into the Vanquish UHPLC system. It accommodates up to nine sample racks, deep well plates or 20 shallow well plates. This includes a bar code reader with empty shelf detection and rack/well plate verification. Users can add samples at any time, even while the instrument is operating, to enable maximum throughput and usability.

Hard carbon-coated ceramic injection valve and pump pistons are designed to deliver consistent, reproducible performance for 200,000 injections, further enhancing uptime by minimising maintenance.

The Vanquish’s Diode Array Detector is designed to generate high-confidence data over a wide linear range with high signal-to-noise performance, beyond the capabilities of variable wavelength detectors. Low-dispersion 10 mm and 60 mm flow cells provide high sensitivity levels and wide linearity for demanding applications. Fused-silica LightPipe flow cells are designed to exploit low baseline drift for reproducible quantitation. Customers can acquire up to 10 signal channels simultaneously, and a spectrum 3D field at 200 Hz. Sensitivity, linearity, and spectral resolution can be tailored to suit the application using four programmable optical slit widths from 1 nm to 8 nm.


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