Title of article :
Carrier-facilitated bulk liquid membrane transport of iron(III) hydroxamate complexes utilizing a labile recognition agent and amine recognition in the second coordination sphere
Author/Authors :
Wirgau، Joseph I. نويسنده , , Crumbliss، Alvin L. نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-367
From page :
368
To page :
0
Abstract :
Carrier-facilitated bulk liquid membrane transport from an aqueous source phase through a chloroform membrane phase to an aqueous receiving phase was studied for various Fe(III) hydroxamate complexes (siderophore mimics) using second coordination sphere recognition. Iron transport systems were designed using a strategy whereby a tetradentate siderophore mimic sequesters iron(III), leaving two labile aquated coordination sites for ternary complex formation. This aquated complex reacts with a bi-functional host/guest molecule capable of acting as a host for the iron complex via ternary complex formation, while simultaneously serving as a guest for a membrane-bound host (carrier). The bi-functional molecules utilized contain a hydroxamate host for Fe(III) binding and a protonated primary amine that can be "recognized" by a liquid membrane-bound hydrophobic ionophore, which carries the hydrophilic Fe(III)-complex across the hydrophobic membrane to an aqueous receiving phase. Four protonated amine hydroxamic acids were investigated as bi-functional host/guest molecules: (beta)-alanine hydroxamic acid (H2Lala)+, L-glutamic acid (gamma)-monohydroxamic acid (H3Lglu)+, glycine hydroxamic acid (H2Lgly)+, and L-lysine hydroxamic acid (H3Llys)2+. These four bidentate ligands were each coordinated to Fe(III) along with the tetradentate N,Nʹ-dihydroxy-N,Nʹ-dimethyldecanediamide (H2L8) to form ternary complexes [Fe(L8) (HxLy)z; x= 1 or 2; y= ala, glu, gly, or lys; z= 0, +1, or +2] that were transported through a chloroform bulk liquid membrane by the lipophilic host carrier cis-dicyclohexano-18-crown-6 (DC18C6). No carrier-dependent flux was observed for Fe(L8)(HLglu), probably due to intramolecular H-bonding. Flux values for the transport of Fe(L8)(HxLy)z(x= 1 or 2; y= ala, gly, or lys; z=+1 or +2) facilitated by the membrane carrier (DC18C6) were highest when y= gly and lowest when y= ala. Equilibrium constants pertaining to two-phase distribution or ion pairing, second coordination sphere host-guest formation, and overall extraction were determined and used to rationalize variations in flux values.
Keywords :
Greenhouse , DIGLYPHUS ISAEA , Abamectin compatibility , IPM , Biological control , Liriomyza trifolii
Journal title :
DALTON TRANSACTIONS
Serial Year :
2003
Journal title :
DALTON TRANSACTIONS
Record number :
64490
Link To Document :
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