For more than 60 years, Bruker has enabled scientists to make breakthrough discoveries and develop new applications that improve the quality of human life. Bruker’s high-performance analytical and diagnostic systems explore life and materials at molecular, cellular and microscopic levels in the applied, molecular, and pharmaceutical research areas.
Thank you for joining us at the 2023 SMASH Annual Meeting and Expo. This page provides access to the following literature downloads related to our latest NMR advancements.
Novel Single-Story Compact NMR with Reduced Helium Consumption
The Ascend Evo 1.0 GHz NMR system offers a unique compact magnet that significantly reduces footprint, weight, and ceiling height requirements, as well as provides a dramatic threefold reduction in liquid helium consumption. This novel and unique design also significantly reduces siting, installation, and operational costs making it more accessible to more labs.
Ascend Evo 1.0 GHz NMR Magnet
Need to improve process control? Tired of repetitive and time-consuming calibrations?
Flow NMR is now at your fingertips with our new benchtop solution for online monitoring of chemical and bio processes by NMR, in real-time, under real process conditions.
Bruker’s Fourier RxnLab provides answers to key chemical questions, such as conversion, in-situ reaction yield and reaction kinetics.
Provides answers to key chemical questions: reaction yield, mechanistic insights and reaction kinetics Harness NMR data to make strategic process chemistry decisions, ultimately leading to cost savings.
PAT offers the pharmaceutical industry a framework for revolutionizing its R&D and manufacturing businesses, to produce value for both themselves and patients. The main benefits associated with PAT for companies include:
Process Analytical Technology (PAT) is a powerful quality assurance tool that can revolutionize the development and manufacturing lifecycle of automatically processed products.
The new CPMAS CryoProbe reduces drug product measurement time by one order of magnitude and enables structural elucidation experiments not possible before. Structure-property relationship for rational drug development, with confidence!
At Bruker, we prioritize sustainable practices in all aspects of our operations, including the handling of cooling liquids used directly in our production processes. We understand that cooling liquids are vital to our manufacturing process but also pose potential risks to the environment and human health if not properly managed. We have introduced a wide range of measures designed to reduce and/or recover/recycle cooling liquids wherever possible.
Innovation Driving Sustainability Resources
Bruker Corporation’s ESG report 2023
NMR is a unique and powerful technique for chemical analysis ranging from basic identification and quantification of substances to molecular structure elucidation. With a range of NMR systems – from cost-optimized benchtop devices to high-performance floor-standing instruments – Bruker provides a powerful solution portfolio for comprehensive value chain coverage from product innovation to manufacturing. Powered by our industry-leading analysis and acquisition software TopSpin, Bruker NMR systems enable organizations to achieve a Distributed Laboratory Topology (DLT) in which expertise, methods, and data can be easily and quickly shared between different stages in the value chain and different locations.
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Chemical manufacturing requires extensive testing: from incoming raw materials through processing to final product quality control. Nuclear Magnetic Resonance (NMR) provides a valuable, comprehensive tool to identify and quantify multiple compounds in a chemical mixture with just one measurement. The Bruker Fourier 80 benchtop Chemical Mixture Profiler simplifies and extends the opportunity for NMR analysis to even the routine laboratory. Expand your analytical capability for chemical mixture analysis with a database driven end-to-end workflow from measurement to report.
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Magnetic resonance technology provides a valuable tool for the batteries industry by enabling researchers to gain in-depth insights into the chemical and physical processes that govern battery performance. This technology can be effectively applied as well to the value chain and supply chain of batteries manufacturing to ensure the consistent quality of battery components and materials, including electrodes, electrolytes, and separators. Furthermore, it can be utilized to monitor battery production processes and identify any defects or inconsistencies that may compromise battery performance or safety. By leveraging magnetic resonance technology, batteries manufacturers can enhance their production capabilities and develop more efficient, durable, and cost-effective battery solutions that meet the growing demands of the market.
Whether you are a battery manufacturer or a researcher, Magnetic Resonance can help achieving innovation in the fast-paced world of batteries research and manufacturing.
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Discover how NMR*-Based Metabolomic Solutions may help researchers in precision medicine and personalized nutrition discoveries.
On a day-to-day basis, it's simply the efficiency of NMR* that makes it such a good tool. Again, we have a lots of different projects, but the most exciting one is to be able to really drive personalized nutrition
Welcome to the nutrition hub:
*Bruker NMR Instruments are for Research Use Only. Not for Use in Clinical Diagnostic Procedures