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Octahedral complexes, siderophores

Despite the considerable structural variation found in the siderophores, their common feature is to form six-coordinate octahedral complexes with ferric ion of great thermodynamic stability. The ligating groups usually contain the oxygen atoms of hydroxamate (a) or catecholate (b) anions. [Pg.51]

The use of metal ions as kinetic synthetic templates is extremely widespread, and is an excellent way in which to bring about the organisation of a number of reacting components in order to direct the geometry of the product. Because some metal ions, such as the transition metals, often have preferred coordination geometries (e.g. tetrahedral, square planar, octahedral etc), changes in metal ion may have a profound effect on the nature of the templated product. Metal-ion-templated syntheses may be classified more generally as examples of self-assembly with covalent postmodification. For example, the synthesis of the artificial siderophore 10.2 is effected by the use of an octahedral Fe3+ template.8 In this case, the macrobicyclic product is obtained as the Fe3+ complex from which it is difficult to separate. [Pg.637]

Figure 6.18. MacrcKyclic complex fonners. (a) Structure of a ferrichrome (desferri-ferrichrome), one of the strongest complex formers presently known for Fe(III). The iron-binding center is an octahedral arrangement of six oxygen donor atoms of trihy-droxamate. Such naturally occurring ferrichromes play an important role in the biosynthetic pathways involving iron. Complexing functionalities of some biogenic ligands (b) hydroxamate siderophores, (c) catechol siderophores, and (d) phytochelatines. For detailed structures see Neilands (1981). Figure 6.18. MacrcKyclic complex fonners. (a) Structure of a ferrichrome (desferri-ferrichrome), one of the strongest complex formers presently known for Fe(III). The iron-binding center is an octahedral arrangement of six oxygen donor atoms of trihy-droxamate. Such naturally occurring ferrichromes play an important role in the biosynthetic pathways involving iron. Complexing functionalities of some biogenic ligands (b) hydroxamate siderophores, (c) catechol siderophores, and (d) phytochelatines. For detailed structures see Neilands (1981).

See other pages where Octahedral complexes, siderophores is mentioned: [Pg.182]    [Pg.432]    [Pg.755]    [Pg.759]    [Pg.790]    [Pg.111]    [Pg.1003]    [Pg.970]    [Pg.38]    [Pg.46]    [Pg.1003]    [Pg.992]    [Pg.444]    [Pg.110]    [Pg.134]    [Pg.937]    [Pg.194]    [Pg.1616]    [Pg.937]    [Pg.443]    [Pg.231]    [Pg.40]    [Pg.3]    [Pg.32]    [Pg.753]    [Pg.759]    [Pg.38]    [Pg.972]    [Pg.443]    [Pg.661]    [Pg.156]    [Pg.2339]    [Pg.2753]    [Pg.443]    [Pg.86]    [Pg.41]    [Pg.149]    [Pg.174]    [Pg.133]    [Pg.149]    [Pg.628]    [Pg.239]    [Pg.144]    [Pg.6]    [Pg.834]   
See also in sourсe #XX -- [ Pg.755 , Pg.759 , Pg.790 ]




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