NMR

Bruker BioSpin NMR

Instruments and Software for Nuclear Magnetic Resonance Spectroscopy

The Bruker-BioSpin NMR Division manufactures state-of-the-art NMR spectrometers for chemistry, biochemistry, medicine, pharmaceuticals, and material science. We have regional offices throughout the world staffed with sales teams, application scientists and service engineers. We've placed our support centers in key locations to ensure a timely and efficient response to our customers.
 

Small Molecule Characterization from Molecular Formula Determination to Automated Structure Verification

Complete Molecular Confidence™
Complete Molecular Confidence is a unique, fully integrated NMR-LC/MS based solution delivering on-the-fly molecular formulae determination and automated structure verification for small molecules and natural products.

Sensitivity Boost for Solid State NMR

263 GHz Solids DNP Spectrometer (WiP)
Dynamic Nuclear Polarization (DNP) can be used to increase the sensitivity of NMR experiments by transferring the much higher polarization of unpaired electrons spins to nuclear spins.

 

NMR Based Fruit Juice Quality Control

NMR Based Fruit Juice Quality Control
The JuiceScreener combined with its SGF Profiling technique can deliver huge amounts of information derived from one single experiment, instead of multiple individual analysis steps.

 

 

AVANCE™ III NanoBay - The Most Highly Integrated State-of-the-Art NMR Spectrometer

AVANCE™ III NanoBay - The Most Highly Integrated State-of-the-Art NMR Spectrometer

The new Avance™ III NanoBay is the most comprehensively integrated, state-of-the-art NMR spectrometer ever produced. The NanoBay’s innovative design sees Bruker’s high-performance Avance™ III NMR spectrometer technology boldly held within an exceptionally compact enclosure.

Avance™ III, the Fastest, Highest Performance and Most Flexible NMR Spectrometer Ever

AVANCE™ III - Flexibility for Tomorrow's Applications, Today

The speed and flexibility of the next generation spectrometer AVANCE III empowers fast acquisition techniques, the most demanding NMR experiments in solid-state NMR, enables simultaneous multi nuclei acquisition and provides a uniquely capable platform for NMR applications development.