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Nuclear Magnetic Resonance Spectroscopy

机译:核磁共振波谱

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Over the past fifty years, nuclear magnetic resonance spectroscopy (NMR) has gained popularityin a wide variety of research areas. Its non-invasive character makes it ideal for the study ofbiomolecules and tissue samples. The possibility of determining the solution structure of moleculeswith the use of NMR has led to important advances in many areas including pharmacy, biology, botany,medicine, sensor design, study of polymers and more. The technology used in spectrometer and probedesign have advanced to allow the study of molecules in solids, liquids, and gels. Additionally, data inthe form of images, multidimensional spectra, or relaxation profiles can be obtained to study systemsfrom different fronts. The possibility of detecting multiple nuclei allows intimate examination andcharacterization of a wide variety of materials.
机译:在过去的五十年中,核磁共振波谱(NMR)在广泛的研究领域中得到了普及。它的非侵入性特性使其成为研究生物分子和组织样品的理想选择。利用NMR确定分子溶液结构的可能性已经导致了许多领域的重要进展,包括药学,生物学,植物学,医学,传感器设计,聚合物研究等等。光谱仪和探针设计中使用的技术已经先进,可以研究固体,液体和凝胶中的分子。另外,可以获取图像,多维光谱或弛豫轮廓形式的数据来研究来自不同方面的系统。检测多个原子核的可能性允许对各种材料进行深入的检查和表征。

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