Technical Data: Applications of TD-NMR in Materials and Pharmaceutical Fields
minispec
We will provide a detailed introduction to the features, performance, and applications of TD-NMR "minispec," which is widely used in the materials and pharmaceutical fields.
The bench-top time-domain nuclear magnetic resonance (TD-NMR) "minispec" is a magnetic resonance device that observes relaxation times, primarily measuring protons, but it can also optionally observe elements like fluorine. It is widely used for non-destructive measurements in quality control and quality assurance. Due to differences in relaxation times, it allows for the quantification of additives and cross-linking density, and it can monitor changes in physical properties and phase transitions. Additionally, it can determine diffusion coefficients and analyze the particle size distribution of water and oil. In the section "Applications of TD-NMR in Materials and Pharmaceuticals," we introduce the features and performance of TD-NMR, application examples in various fields, options, and a lineup of series products. Application examples include quantification of cross-linking density/additives, observation of fluorine, and measurement of body fat in animals. For more details, please contact us.
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basic information
【Publication Contents】 ○ What is Time-Domain Nuclear Magnetic Resonance (TD-NMR)? ○ Features of minispec ○ Applications in materials science ○ Polymer field: Quantification of crosslinking degree/additives ○ Petrochemicals/fiber chemistry/pharmaceuticals ○ Physical property research/observation of state changes ○ Observation of fluorine/observation of rocks/observation of diffusion coefficients ○ Measurement of animal body fat ○ Options/installation environment ○ TD-NMR equipped with cutting-edge technology ● For more details, please contact us.
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Applications/Examples of results
**Usage** ○ As a time-domain nuclear magnetic resonance device. **Examples of Applications** ○ Measurement of polymerization rate/crosslink density ○ Quantification of butadiene in ABS polymer ○ Spin finish ○ Observation of fluorine nuclei ○ Other applications [Food-related] → Determination of solid phase oil content in fats → Determination of moisture and oil content in foods such as chocolate and nuts, etc. [Chemical-related] → Determination of additives in polymers → Determination of crystallinity in polymers, etc. [Medical and Pharmaceutical-related] → Measurement of fluoride content in toothpaste → Measurement of T1, T2, etc. [Research and Development-related] → Measurement of T1, T1ρ, T2 → Solid echo method, etc. ● For more details, please contact us.
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Bruker Biospin Group designs, manufactures, and sells instruments based on magnetic resonance technology, including world-class nuclear magnetic resonance (NMR) and electron paramagnetic resonance (EPR) spectrometers. They also develop preclinical imaging systems with single and multiple modes using magnetic resonance imaging (MRI), positron emission tomography (PET), single-photon emission computed tomography (SPECT), computed tomography (CT), and magnetic particle imaging (MPI) technologies. Bruker Biospin provides the unique capabilities of NMR to determine the structure, dynamics, and functions of specific molecules to customers in academic research institutions, government agencies, industry, and pharmaceutical companies. In particular, applications in structural proteomics, drug discovery, pharmaceutical and biotechnology research and production, and food and materials science are expected to be promising.