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InSplorer Multimodal nonlinear endoscopic microscopic system

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  • InSplorer Multimodal nonlinear endoscopic microscopic system

    description: The nanoMRR is a beginner-friendly Molecular Rotational Resonance (MRR) spectrometer, designed for academics and researchers seeking a powerful tool for precise molecular analysis without the complexity.The nanoMRR bridges the gap between theory and real-

    Summarize

    The nanoMRR is a beginner-friendly Molecular Rotational Resonance (MRR) spectrometer, designed for academics and researchers seeking a powerful tool for precise molecular analysis without the complexity.The nanoMRR bridges the gap between theory and real-world application, enabling students and educators to explore advanced topics like molecular structure, quantum chemistry, and isotope analysis—all from a compact benchtop system.

    Advantage

    MRR spectroscopy technology can perform highly selective and quantitative measurements, and has obvious advantages in the quantitative analysis of small molecule isomer mixtures.

    Application

    New process characterization: In the novel photocatalytic reaction, MRR can analyze isomer mixtures, determine the conformational isomers of the main products, quantify the isomer ratio, and also verify the geometric structure of stereoisomers, which is more convenient than traditional methods.

    Chiral purity analysis: Taking the chiral purity detection of pantothenic acid (vitamin B5), a key step in pantothenic acid (vitamin B5) production, as an example, MRR converts enantiomers into distinguishable dienantiomer complexes by adding chiral labels, which can determine the absolute configuration and enantiomer excess, with short measurement time and small sample usage.

    Isotope-labeled compound analysis: In the field of chemistry, especially in the development of deuterated drugs, MRR can distinguish and quantify isotope variants in mixtures, assist in identification through computational simulation spectra, and also analyze enantiomeric isotope isomers.

    Online/in-situ reaction monitoring: Applying MRR technology to the monitoring of flow chemical processes can meet the requirements of rapid feedback, low sample consumption, ease of use and data interaction. Taking the asymmetric hydrogenation reaction of artemisinic acid as an example, MRR can monitor the product distribution online and is more efficient than traditional methods.


    Detailed Specifications