By R.R. Gupta, M. Jain, P. Pardasani, R.T. Pardasani, A. Pelter

Nuclear Magnetic Resonance (NMR) relies at the undeniable fact that definite nuclei show a magnetic second, orientated by way of a magnetic box, and take up attribute frequencies within the radiofrequency a part of the spectrum. The spectral traces of the nuclei are hugely prompted via the chemical atmosphere, i.e. the constitution and interplay of the molecules. NMR is now the top procedure and a strong software for the research of the constitution and interplay of molecules. the current Landolt-Börnstein quantity III/40A "Nuclear Magnetic Resonance facts, Chemical Shifts and Coupling Constants for Boron-11" seems to be as a complement quantity to Landolt-Börnstein's New sequence team III, quantity 35, Subvolume A. integrated during this quantity are basic boranes, boron macrocycles, dendrimers, and polymers.

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Extra resources for Nuclear Magnetic Resonance Data: Subvolume A Chemical Shifts and Coupling Constants for Boron-11

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Chem. 2003 (2003) 3759. 1007/978-3-642-01994-4_5 ß Springer 2009 1 Nuclear magnetic resonance data of B3H4Li 6 Nuclear magnetic resonance data of B3H4Li Data extract from Landolt-Bo¨rnstein III/40 “Nuclear Magnetic Resonance Data”, Subvolume A “Chemical Shifts and Coupling Constants for Boron-11” B chemical shift δ [ppm], downfield from BF3·Et2O, and coupling constants nJ [Hz]. All measurements refer to room temperature if not stated otherwise. 5Hz) Solvent − Ref. : J. Org. Chem. 61 (1996) 8771.

Soc. 120 (1998) 11391. : J. Am. Chem. Soc. 119 (1997) 9449. 1007/978-3-642-01994-4_4 ß Springer 2009 1 Nuclear magnetic resonance data of BH3O6P4 5 Nuclear magnetic resonance data of BH3O6P4 Data extract from Landolt-Bo¨rnstein III/40 “Nuclear Magnetic Resonance Data”, Subvolume A “Chemical Shifts and Coupling Constants for Boron-11” B chemical shift δ [ppm], downfield from BF3·Et2O, and coupling constants nJ [Hz]. All measurements refer to room temperature if not stated otherwise. 11 Gross Formula Structure δB[ppm] / nJ[Hz] Solvent Ref.

Chem. 38 (1999) 44. 1007/978-3-642-01994-4_7 ß Springer 2009 1 Nuclear magnetic resonance data of BH6P 8 Nuclear magnetic resonance data of BH6P Data extract from Landolt-Bo¨rnstein III/40 “Nuclear Magnetic Resonance Data”, Subvolume A “Chemical Shifts and Coupling Constants for Boron-11” B chemical shift δ [ppm], downfield from BF3·Et2O, and coupling constants nJ [Hz]. All measurements refer to room temperature if not stated otherwise. ) − Ref. : Inorg. Chem. 38 (1999) 44. 1007/978-3-642-01994-4_8 ß Springer 2009 1 Nuclear magnetic resonance data of B2H6O6P4 9 Nuclear magnetic resonance data of B2H6O6P4 Data extract from Landolt-Bo¨rnstein III/40 “Nuclear Magnetic Resonance Data”, Subvolume A “Chemical Shifts and Coupling Constants for Boron-11” B chemical shift δ [ppm], downfield from BF3·Et2O, and coupling constants nJ [Hz].

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