Chemical Shifts and Coupling Constants for Phosphorus-31: by R. R. Gupta, M. D. Lechner, V. Gupta (eds.)

By R. R. Gupta, M. D. Lechner, V. Gupta (eds.)

Nuclear Magnetic Resonance (NMR) is predicated at the proven fact that definite nuclei show a magnetic second, orient by means of a magnetic box, and take in attribute frequencies within the radiofrequency a part of the spectrum. The spectral traces of the nuclei are hugely encouraged by means of the chemical surroundings i.e. the constitution and interplay of the molecules. NMR is now the best strategy and a strong software for the research of the constitution and interplay of molecules. the current Landolt-Börnstein vol.III/35 "Nuclear Magnetic Resonance (NMR) facts" is hence of significant curiosity to all scientists and engineers who intend to take advantage of NMR to review the constitution and the binding of molecules. Vol. III/40H is split into 3 subvolumes, them all describing NMR-data approximately 31P.

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Chemical Shifts and Coupling Constants for Phosphorus-31: Part 3, 1st Edition

Nuclear Magnetic Resonance (NMR) relies at the proven fact that sure nuclei show a magnetic second, orient by way of a magnetic box, and take in attribute frequencies within the radiofrequency a part of the spectrum. The spectral strains of the nuclei are hugely encouraged by means of the chemical setting i. e. the constitution and interplay of the molecules.

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Extra info for Chemical Shifts and Coupling Constants for Phosphorus-31: Part 3, 1st Edition

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130 (1997) 65. 1007/978-3-642-41599-9_22 © Springer 2014 21 Chemical Shifts and Coupling Constants for C26H21BrNO3P 1 21 Chemical Shifts and Coupling Constants for C26H21BrNO3P Data extract from Landolt-Börnstein III/40 “Nuclear Magnetic Resonance Data”, Subvolume H “Chemical Shifts and Coupling Constants for Phosphorus-31”, Part 3 Table for P chemical shift P [ppm] and coupling constant nJ [Hz], downfield from 85% H3PO4. All measurements refer to room temperature if not stated otherwise.

178 (2003) 2183. 1007/978-3-642-41599-9_46 © Springer 2014 45 Chemical Shifts and Coupling Constants for C26H23F3NO5P 1 45 Chemical Shifts and Coupling Constants for C26H23F3NO5P Data extract from Landolt-Börnstein III/40 “Nuclear Magnetic Resonance Data”, Subvolume H “Chemical Shifts and Coupling Constants for Phosphorus-31”, Part 3 Table for P chemical shift P [ppm] and coupling constant nJ [Hz], downfield from 85% H3PO4. All measurements refer to room temperature if not stated otherwise.

1007/978-3-642-41599-9_21 © Springer 2014 20 Chemical Shifts and Coupling Constants for C26H20N3O5P 1 20 Chemical Shifts and Coupling Constants for C26H20N3O5P Data extract from Landolt-Börnstein III/40 “Nuclear Magnetic Resonance Data”, Subvolume H “Chemical Shifts and Coupling Constants for Phosphorus-31”, Part 3 Table for P chemical shift P [ppm] and coupling constant nJ [Hz], downfield from 85% H3PO4. All measurements refer to room temperature if not stated otherwise. Structure: H5C6O O C6H5 P N O H N C 6 H5 O2 N Solvent  31P [ppm] / nJ [Hz] Ref.

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