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Octahedral ethylenediamine complexes, ring conformation

Fig. 21-3. Diagrams showing the different sets of repulsive interactions that exist between the three different pairs of ring conformations in octahedral ethylenediamine complexes. Broken lines represent the significant repulsive interactions. [Reproduced by permission... Fig. 21-3. Diagrams showing the different sets of repulsive interactions that exist between the three different pairs of ring conformations in octahedral ethylenediamine complexes. Broken lines represent the significant repulsive interactions. [Reproduced by permission...
Five- and six-membered rings formed by coordination of diamines with a metal ion have the stereochemical characteristics of cyclopentane and cyclohexane. The ethylenediamine complexes have puckered rings and the trimethylenediamine complexes have chair conformations. The methylene protons are nonequivalent in these nonplanar conformations, taking on the character of equatorial and axial substituents. They are made equivalent as the result of rapid conformational inversion at room temperature, just as in the alicyclic compounds (Fig. 7.1). This has been observed in nmr studies of planar and octahedral complexes of ethylenediamine-type ligands with a number of metals. [Pg.334]

Octahedral Chelate Complexes.— 2T-Ray analysis of (-l-) g,-c -dicyanobis-(ethylenediamine)cobalt(iii) chloride monohydrate establishes that the absolute configuration of the [Co(CN)2(en)J+ complex cation is a (AA), in conformity with the previous spectroscopic assignment. Both chelate rings are of the ob conformation. The mean Co-N and Co-C distances are 1.97 and 1.87 A, respectively and the Co-C-N units do not deviate significantly from linearity. In a preliminary note the absolute configurations of both complex ions in (—)6s -[Co(N02)2(en)J(+)68 -[Co(mal)jen], where mal = malonato, CHa(C08)2 , are said to be A and all en chelate rings to exhibit the ob conformation. ... [Pg.538]

Stereoselectivity ond In addition to the dissymmetry generated by the tris(chclaie) structure of octahedral he Conformation of complexes, it is possible to have dissymmetry in the ligand as well. For example. Ihe Chelate Rings gauche confiwmalion of ethylenediamine is dissymetric (Fig. 12.27) and could be... [Pg.261]


See other pages where Octahedral ethylenediamine complexes, ring conformation is mentioned: [Pg.594]    [Pg.1075]    [Pg.131]    [Pg.240]    [Pg.251]   
See also in sourсe #XX -- [ Pg.33 ]




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Conformation complexation

Ethylenediamine complexes

Octahedral ethylenediamine complexes, ring

Ring complexes

Rings conformations

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