Arginine plays several important roles in cellular metabolism; it is able to generate NO, which is a vasodilator. Arginine is able to complex cations in aqueous solutions because it is an amino acid. This paper studies the behavior of arginine as a ligand in the complex formation with iron(II) and iron(III) in 1.00 mol kg(-1) NaClO4 as ionic medium and at 25 degrees C. In the case of iron(II) the experimental data obtained by means of electromotive force measurements of galvanic cell with a glass electrode can be explained by assuming the formation of only a complex (1:1), and its stability constant is determined. Experimental data for the system iron(III) arginine, obtained from electromotive force measurements carried out by employing gla...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
An investigation of ferric ion complexing has been conducted in synthetic media and seawater at 25°C...
Arginine is an important amino acid involved in the production of NO, which is a vasodilatator. Its ...
The compositions of solutions containing arginine and calcium (II) or magnesium (II) were studied at...
Arginine and copper(II) play an important role in human physiology. Arginine is a precursor of NO wh...
Arginine is an amino acid playing an important role in human physiology because it is involved in th...
Among amino acids, arginine is important in human physiology because it plays an important role in c...
The behaviour of arginine as ligand was studied previously1,2, but the complex formation with lead (...
Arginine and zinc(II) play an important role in the human physiology. Arginine is a precursor of NO ...
The complex formation beween asparagine and cobalt(II), iron(II), nickel(II), calcium(II) and magnes...
The stepwise formation of iron(III)-azide complexes in water/THF medium has been investigated at 20....
Electrochemical characterization of iron(III)–glycine–nitrilotriacetate (iron(III)-Gly-NTA) mix-ed l...
Estimates of the concentrations and identity of the predominant complexes of iron with the low-molec...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
An investigation of ferric ion complexing has been conducted in synthetic media and seawater at 25°C...
Arginine is an important amino acid involved in the production of NO, which is a vasodilatator. Its ...
The compositions of solutions containing arginine and calcium (II) or magnesium (II) were studied at...
Arginine and copper(II) play an important role in human physiology. Arginine is a precursor of NO wh...
Arginine is an amino acid playing an important role in human physiology because it is involved in th...
Among amino acids, arginine is important in human physiology because it plays an important role in c...
The behaviour of arginine as ligand was studied previously1,2, but the complex formation with lead (...
Arginine and zinc(II) play an important role in the human physiology. Arginine is a precursor of NO ...
The complex formation beween asparagine and cobalt(II), iron(II), nickel(II), calcium(II) and magnes...
The stepwise formation of iron(III)-azide complexes in water/THF medium has been investigated at 20....
Electrochemical characterization of iron(III)–glycine–nitrilotriacetate (iron(III)-Gly-NTA) mix-ed l...
Estimates of the concentrations and identity of the predominant complexes of iron with the low-molec...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
The complex formation between the Fe3+ ion and 2-hydroxybenzohydroxamic acid (salicylhydroxamic acid...
An investigation of ferric ion complexing has been conducted in synthetic media and seawater at 25°C...