By Graham A. Webb
Nuclear magnetic resonance (NMR) is an analytical software utilized by chemists and physicists to check the constitution and dynamics of molecules. in recent times, no different process has received such importance as NMR spectroscopy. it really is utilized in all branches of technological know-how within which exact structural choice is needed and during which the character of interactions and reactions in answer is being studied. Annual stories on NMR Spectroscopy has proven itself as a optimum potential for the expert and non-specialist alike to familiarize yourself with new ideas and functions of NMR spectroscopy.
This quantity of Annual stories on NMR Spectroscopy specializes in the analytical device utilized by chemists and physicists and comprises themes such as Profiling of foodstuff Samples, fresh Advances in answer NMR experiences and Magic perspective Spinning NMR stories of Protein Assemblies
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Extra resources for Annual Reports on NMR Spectroscopy, Volume 81
Chem. 80 (2008) 59–84.  C. Martineau, F. Fayon, C. -Y. Buzare, M. Body, D. Massiot, F. Goutenoire, Structure determination of b-Pb2ZnF6 by coupling multinuclear solid state NMR, powder XRD and ab initio calculations, Dalton Trans. 44 (2008) 6150–6158. J. Bastow, 67Zn NMR investigation of zinc halides, Chem. Phys. Lett. 380 (2003) 516–520.  G. Wu, Zinc-67 nuclear magnetic resonance spectroscopy of solids, Chem. Phys. Lett. 298 (1998) 375–380.  S. Sham, G. Wu, Zinc-67 NMR study of tetrahedral and octahedral zinc sites with symmetrical oxygen, nitrogen, and sulfur ligands, Can.
Park, Z. P. Y. Choi, R. J. K. Chae, M. M. Yaghi, Exceptional chemical and thermal stability of zeolitic imidazolate frameworks, Proc. Natl. Acad. Sci. A. 103 (2006) 10186–10191.  J. Liang, J. Li, J. Yu, P. Chen, Q. Fang, F. Sun, R. Xu, [(C4H12N)2][Zn3(HPO3)4]: an open-framework zinc phosphite containing extra-large 24-ring channels, Angew. Chem. Int. Ed. 45 (2006) 2546–2548. -L. -H. -L. Wang, 26-ring-channel structure constructed from bimetal phosphite helical chains, J. Am. Chem. Soc. 129 (2007) 5350–5351.
Grandinetti, A simple technique for determining nuclear quadrupole coupling constants with RAPT solid-state NMR spectroscopy, J. Am. Chem. Soc. 124 (2002) 4964–4965. M. W. Schurko, Understanding chemical shielding tensors using group theory, MO analysis, and modern density-functional theory, Concepts Magn. Reson. 34A (2009) 91–123.  J. Autschbach, S. W. Schurko, Analysis of electric field gradient tensors at quadrupolar nuclei in common structural motifs, Concepts Magn. Reson. 36A (2010) 84–126.
Annual Reports on NMR Spectroscopy, Volume 81 by Graham A. Webb