By Dipl.-Ing. Dr. techn. (Vienna), Ph. D. (Cantab.), Sc. D. (Cantab.) Viktor Gutmann (auth.)
Considerable recognition has been focussed on non-aqueous chemistry within the final decade and this case has arisen without doubt from a consciousness of the significant software of this department of chemistry. inside this box a lot lively paintings has been channelled into the selection of the coordination chemistry of tran sition metals in those solvent 8ystems. intricate experimental suggestions were built to find, particularly, the magnetic and spectral homes of advanced compounds, and the theoretical historical past of such structures has been accelerated to corroborate, so far as attainable, the experimental effects. this article has, in spite of the fact that, a special bias from many books at present on hand in this department of chemistry, and is designed to be a survey of recognized proof on some of the non-aqueous solvents at the moment in use almost always within the box of halogen chemistry, including a dialogue of those proof within the mild of permitted rules. As such, it truly is was hoping to shut a spot within the literature of which many employees and complicated scholars during this box might be acutely aware. The therapy is intended to be selective instead of thoroughly finished and needs to unevitably replicate many of the unique pursuits of the author.
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Extra info for Coordination Chemistry in Non-Aqueous Solutions
E. McKENZIE: J. ArneI'. Chern. Soc. 74, 3243 (1954). : Z. anorg. aUg. Chern. 264, 156 (1951). , and E. BRUNNECK: Z. anorg. aUg. Chern. 270, 201 (1952). , and E. BRUNNECK: Z. anorg. aUg. Chern. 278, 197 (1955). : Mh. Chern. 85, 393 (1954). : Mh. Chern. 85, 404 (1954). , and H. TANNENBERGER: Mh. Chern. 88, 216, 292 (1957). , and G. HAMPEL: Mh. Chern. 92, 1048 (1961). , R. C. PAUL, and S. S. SANDHU: J. Chern. Soc. : Oesterr. Chern. Ztg. 62, 326 (1961). 47 SMITH, G. B. : Chern. Revs. 23, 165 (1938).
Chern. 88, 216, 292 (1957). , and G. HAMPEL: Mh. Chern. 92, 1048 (1961). , R. C. PAUL, and S. S. SANDHU: J. Chern. Soc. : Oesterr. Chern. Ztg. 62, 326 (1961). 47 SMITH, G. B. : Chern. Revs. 23, 165 (1938). 28 Principles of Coordination Chemistry in Non-Aqueous Solutions Anionic complexes other than chloro-complexes cannot be expected in such solvents due to the occurrance of solvolysis. When the formation of bromo-complexes is required, iodine monobromide 48 , mercuric bromide 49 ,50 or an oxybromide, such as benzoyl bromide 51 ,52, may be used as solvents.
P. TRIPATHI: Angew. Chern. 74, 116 (1962). : Compt. Rend. Acad. Sci. Paris 135, 1106 (1902). 3S PARRY, R. , D. R. SCHULTZ, and P. R. GIRARDOT: J. Amer. Chern. Soc. 80,1 (1958). 39 FOWLES, G. W. : Progr. Inorg. Chern. 6,1 (1964). 40 FOWLES, G. W. , P. G. LANIGAN, and D. NICHOLLS: Chern. Ind. (London) 1961, 1167. : J. Inorg. NucI. Chern. 24,1001 (1962). '" EDWARDS, D. , and G. W. A. FOWLES; J. Less Common Metals 4, 512 (1962). 84 85 44 Coordination Chemistry in Proton-containing Donor ::lolvents Moreover polymerization may occur leading to insoluble products in which thc halogen to metal ratio is non-integral and fer which various structures wcre proposed: x M/ "M' '" / ' M/ '" X NH-H ...