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Titlebook: Metal-Ligand Interactions in Organic Chemistry and Biochemistry; Part 1 Bernard Pullman,Natan Goldblum Book 1977 Springer Science+Business

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The Investigation of Metal-Amide Interactions with the Aid of Quantum Chemical Model Calculations a the nerves. New experimental techniques and, recently, the possibility to involve quantum chemical methods in such investigations, have led to numerous papers of both experimental [1–19] and theoretical [19–27] nature.
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Search for General Features in Cation-Ligand Binding. , SCF Studies of the Interaction of Alkali anns with various ligands and explored the reliability in this respect of the possible combinations of different basis sets on the cation and the ligand. The technical aspect and conclusions of this study are presented elsewhere [1]. Broadly speaking it was shown that the poor results obtained with a
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The Conformational Sensitivity of DNA to Ionic Interactions in Aqueous Solutions,olutions of varying concentrations of NaCl, KCl, LiCl, CsCl, NH.C1, MgC1., CaCl., MnC1., ZnC1., and CoC1.. Regression analyses of the data were used to determine the minimum number of spectral components in each electrolyte set, their interchangeability between sets, and their relationship to the st
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Interaction of Gadolinium (III), Manganese (II) and Copper (II) with Cyclic Nucleotides,or metal binding (base and phosphate) this interaction can be complex as the metal ion does not necessarily occupy a unique site. As models for nucleic acids the cyclic nucleotides being phosphodiesters have been chosen. With monoesters there is the additional complication that first row transition
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The Investigation of Metal-Amide Interactions with the Aid of Quantum Chemical Model Calculations anterest to know more about such interactions was stimulated simultaneously by the increasing use of simple amides as nonaqueous solvents in inorganic and organic chemistry and by new insights into biological phenomena like ion transport, bioelectrical membrane potentials and the working mechanism of
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