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مطيافية الكتلة بالرنين الدوراني الأيوني بتحويل فورييه (FT-ICR)×الرنين النووي المغناطيسي بالتعزيز النووي (NOESY)×
المجالعلم الطيفعلم الطيف
العائلةProcess / pipelineProcess / pipeline
سنة النشأة19741981
صاحب الطريقةAlan MarshallRichard Ernst
النوعMass spectrometry techniqueTwo-dimensional pulse sequence
المصدر التأسيسيComisarow, M. B., & Marshall, A. G. (1974). Fourier transform ion cyclotron resonance spectroscopy. Chemical Physics Letters, 25(2), 282-283. DOI ↗Aue, W. P., Bartholdi, E., & Ernst, R. R. (1976). Two-dimensional spectroscopy. Application to nuclear magnetic resonance. The Journal of Chemical Physics, 64(5), 2229-2246. DOI ↗
الأسماء البديلةFT-ICR-MS, Fourier Transform ICR, ICR mass spectrometryNOE spectroscopy, 2D NOESY, NOE NMR
ذات صلة43
الملخصFourier Transform Ion Cyclotron Resonance (FT-ICR) mass spectrometry is an advanced analytical technique that combines magnetic confinement of ions with Fourier transform data processing to achieve exceptional mass accuracy and resolution. Developed by Comisarow and Marshall in 1974, FT-ICR-MS enables the determination of exact masses and elemental compositions of complex molecules, making it invaluable for environmental chemistry, metabolomics, petroleum characterization, and structural elucidation of unknowns.Nuclear Overhauser Enhancement Spectroscopy (NOESY) is a 2D NMR technique that detects through-space dipolar coupling between protons, rather than through-bond scalar coupling. Introduced by Macura and Ernst in 1981, NOESY reveals which protons are spatially close in the three-dimensional structure, independent of bonding connectivity. This makes NOESY invaluable for determining molecular conformation, assigning stereochemistry, and elucidating protein folds.
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ScholarGateقارن الطرق: FT-ICR Mass Spectrometry · NOESY. استُرجع بتاريخ 2026-06-20 من https://scholargate.app/ar/compare