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Nuclear magnetic resonance spectroscopy. Carbon-13-nitrogen-15 coupling constants as a conformational probe

Cite this: J. Am. Chem. Soc. 1974, 96, 21, 6757–6759
Publication Date (Print):October 1, 1974
https://doi.org/10.1021/ja00828a036
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    This article is cited by 26 publications.

    1. Vladislav V. Stanishevskiy, Alla K. Shestakova, Vyacheslav A. Chertkov. Analysis of 2D Maps Based on Similarity in DFT-Calculated vs Experimental 13C–15N Spin Couplings for a Representative Sample of Conformationally Rigid and Structurally Fixed Nitrogen-Containing Organic Compounds. Applied Magnetic Resonance 2022, 53 (12) , 1693-1713. https://doi.org/10.1007/s00723-022-01503-w
    2. Bernard Ancian. NMR Studies for Mapping Structure and Dynamics of Nucleosides in Water. 2010, 39-143. https://doi.org/10.1016/S0066-4103(10)69002-3
    3. Francisca Salort, Carmen Pardo, José Elguero. 1 H, 13 C, and 15 N NMR analysis of Tröger's base and of some of its [ 15 N 1 ] labelled precursors. Magnetic Resonance in Chemistry 2002, 40 (11) , 743-746. https://doi.org/10.1002/mrc.1091
    4. Matthias Eberstadt, Gerd Gemmecker, Dale F. Mierke, Horst Kessler. Scalar Coupling Constants—Their Analysis and Their Application for the Elucidation of Structures. Angewandte Chemie International Edition in English 1995, 34 (16) , 1671-1695. https://doi.org/10.1002/anie.199516711
    5. Matthias Eberstadt, Gerd Gemmecker, Dale F. Mierke, Horst Kessler. Skalare Kopplungen – ihre Analyse und ihre Verwendung zur Strukturaufklärung. Angewandte Chemie 1995, 107 (16) , 1813-1838. https://doi.org/10.1002/ange.19951071604
    6. Victor M. S. Gil, Wolfgang Von Philipsborn. Effect of electron lone‐pairs on nuclear spin–spin coupling constants. Magnetic Resonance in Chemistry 1989, 27 (5) , 409-430. https://doi.org/10.1002/mrc.1260270502
    7. Jozef Kowalewski. Calculations of Nuclear Spin-Spin Couplings. 1982, 81-176. https://doi.org/10.1016/S0066-4103(08)60217-3
    8. V. Mlynárik. Determination of one‐bond 14 N 13 C coupling constants in amines using 13 C T 1ρ measurements. Organic Magnetic Resonance 1981, 17 (3) , 178-179. https://doi.org/10.1002/mrc.1270170308
    9. Masatsune Kainosho, Takashi Tsuji. Dihedral‐angle dependence of the vicinal 15 N, 13 C spin‐coupling constants. A new NMR parameter for the conformational analysis of amino acids and peptides. Organic Magnetic Resonance 1981, 17 (1) , 46-49. https://doi.org/10.1002/mrc.1270170111
    10. Suryanarayana Bulusu, Theodore Axenrod, Joseph R. Autera. Application of 13 C and 15 N NMR spectroscopy to structural studies on nitramines. Organic Magnetic Resonance 1981, 16 (1) , 52-56. https://doi.org/10.1002/mrc.1270160114
    11. Wolfgang Freyer. 15 N‐markierte Verbindungen in der organischen ChemieBeziehungen zwischen Struktur und 15 N‐Kopplungskonstanten. Zeitschrift für Chemie 1981, 21 (2) , 47-58. https://doi.org/10.1002/zfch.19810210203
    12. T. Axenrod, P. Mangiaracina, C. M. Watnick, M. J. Wieder, S. Bulusu. 13 C NMR: The stereochemical dependence of 15 N 13 C coupling constants in pyrazoles. Organic Magnetic Resonance 1980, 13 (3) , 197-199. https://doi.org/10.1002/mrc.1270130309
    13. John A. Smith, Lila G. Pease, Kenneth D. Kopple. Reverse Turns in Peptides and Protein. Critical Reviews in Biochemistry 1980, 8 (4) , 315-399. https://doi.org/10.3109/10409238009105470
    14. Antonio De Marco, Miguel Llinás. Signs of heteronuclear spin–spin coupling constants in 15 N‐acetamide. Organic Magnetic Resonance 1979, 12 (8) , 454-460. https://doi.org/10.1002/mrc.1270120804
    15. C. Niu, R.D. Bertrand, H. Shindo, J.S. Cohen. Cross-peptide bond 13C15N coupling constants by 13C and J cross-polarization 15N NMR. Journal of Biochemical and Biophysical Methods 1979, 1 (3) , 135-143. https://doi.org/10.1016/0165-022X(79)90032-0
    16. Konrad B. Becker, Cyril A. Grob. 13 C‐NMR. Spectra of 4‐Substituted Quinuclidines. Polar effects, Part V. Helvetica Chimica Acta 1978, 61 (7) , 2596-2606. https://doi.org/10.1002/hlca.19780610730
    17. Stefan Berger. The conformational dependence of 15n13c spin spin coupling constants. Tetrahedron 1978, 34 (20) , 3133-3136. https://doi.org/10.1016/0040-4020(78)87011-2
    18. M. Witanowski, I. stefaniak, G.A. Webb. Nitrogen NMR Spectroscopy. 1978, 117-244. https://doi.org/10.1016/S0066-4103(08)60189-1
    19. Roderick E. Wasylishen. Spin—Spin Coupling Between Carbon-13 and the First Row Nuclei. 1978, 245-291. https://doi.org/10.1016/S0066-4103(08)60190-8
    20. Jack S. Cohen, R. G. Shulman. Nuclear Magnetic Resonance Studies of Biologically Relevant Isotopes Other than Hydrogen. CRC Critical Reviews in Biochemistry 1978, 5 (1) , 25-43. https://doi.org/10.3109/10409237809177139
    21. Stefan Berger, Hans Kaletsch. 15 N 13 C coupling constants in 15 N labelled azaadamantane. Organic Magnetic Resonance 1976, 8 (8) , 438-438. https://doi.org/10.1002/mrc.1270080810
    22. Hans Fritz, Daniel Clerin, Jean‐Pierre Fleury. Nuclear spin–spin coupling between 15 N and 13 C in an azomethine ylide and related compounds. Organic Magnetic Resonance 1976, 8 (5) , 269-270. https://doi.org/10.1002/mrc.1270080511
    23. V.F. Bystrov. Spin—spin coupling and the conformational states of peptide systems. Progress in Nuclear Magnetic Resonance Spectroscopy 1976, 10 (2) , 41-82. https://doi.org/10.1016/0079-6565(76)80001-5
    24. James W. H. Kao, Alice Chung-Phillips. Bonded and nonbonded interactions in saturated alcohols, ethers, thiols, thioethers, and amines. The Journal of Chemical Physics 1975, 63 (10) , 4152-4158. https://doi.org/10.1063/1.431188
    25. Manfred Christl. Carbon‐13 chemical shifts and 13 C 15 N coupling constants of 3,4‐dihydroisoquinoline‐ 15 N, its 15 N‐oxide and their conjugate acids. Organic Magnetic Resonance 1975, 7 (7) , 349-350. https://doi.org/10.1002/mrc.1270070712
    26. STEFAN BERGER, JOHN D. ROBERTS. ChemInform Abstract: NUCLEAR MAGNETIC RESONANCE SPECTROSCOPY, (13)C‐(15)N COUPLING CONSTANTS AS A CONFORMATIONAL PROBE. Chemischer Informationsdienst 1974, 5 (52) https://doi.org/10.1002/chin.197452074

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