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1.
Solubilities are reported for the tris-ligand–iron(III) complexes of 3-hydroxy-2-ethyl-4-pyranone and of 3-hydroxy-1,2-dimethyl-4-pyridinone in aqueous solutions of alkali halides and of ammonium and tetraalkylammonium bromides. The Setchenow coefficients estimated from salt effects on solubilities for these complexes are compared with those for other inorganic complexes. 相似文献
2.
A. Kula 《Journal of Thermal Analysis and Calorimetry》2005,81(2):381-385
Summary A procedure for the extrapolation of accelerated thermo-oxidative ageing tests to lower temperatures is proposed. The procedure involves a deconvolution of the global process into high- and low-temperature components where the extrapolation to low temperatures is carried out using the low-temperature component. The method was tested on stabilized and unstabilized polyisoprene rubber and was found to produce realistic estimations of the length of the induction period of oxidation so giving a more accurate estimation of the service life. However, to obtain the low-temperature values of the adjustable kinetic parameters, very low heating rates are required (0.04 K min-1, 0.1 K min-1) making the measurement process time consuming. Using this method, more realistic estimates of the durability of a material are obtained. 相似文献
3.
Kristína Matelková Lenka Kucková Anna Mašlejová Ján Moncoľ Vladimír Jorík Jozef Kožíšek 《Chemical Papers》2016,70(1):82-92
Six copper(II) oxalate complexes, namely {K2[Cu(ox)2]} n (1), {(Hiz)2[Cu(ox)2]} n (2), {[Cu(ox) (N-Bzliz)2]} n (3), (HMeiz)2[Cu(ox)2] (4), {[Cu(ox)(Meiz)2]} n (5), and [Cu(Hox)2(H2O)2](N-Bzliz) (6) where ox = oxalate ion, iz = imidazole, N-Bzliz = N-benzylimidazole, Meiz = 2-methylimidazole, were synthesised and characterised by single crystal X-ray diffraction (complexes 1–5) or powder X-ray diffraction (compound 6). The three-dimensional crystal packing structures of 2, 4, and 5 are consolidated by intermolecular hydrogen bonds linking the oxygen atom of the oxalate group and the amine or imine group of the imidazole-based part into chains. The molecules of complex 6 are held together by intermolecular hydrogen bonds between the oxygen atoms of the oxalate group and coordinated water molecules. 相似文献
4.
《Journal of Coordination Chemistry》2012,65(6):836-846
Polycrystalline complexes of lanthanide(III) with 4-hydroxy-3-methoxybenzoic acid were obtained as hydrated compounds of general formula Ln(C8H7O4)3?·?nH2O. After slow recrystallization we obtained single crystals of complexes and determined their structures. Praseodymium(III) and neodymium(III) form isostructural dihydrated complexes [Ln(C8H7O4)3(H2O)2], which crystallize in the triclinic system, space group P 1. Sm(III), Eu(III), Gd(III), Ho(III) and Tb(III) compounds are hexahydrates and also crystallize in the triclinic system, space group P 1. Dihydrated compounds form polymeric chains with metal centres linked by oxygen atoms of bridging carboxylates. Each metal ion is coordinated by chelating carboxylic group and two water molecules. Complexes of the second isostructural group form dinuclear units [Ln2(C8H7O4)6(H2O)4]?·?8H2O. Lanthanide(III) ions are linked by oxygen atoms of two chelating–bridging carboxylate groups. In the dimeric structure each metal ion coordinates additionally two chelating carboxylic groups and two water molecules. 相似文献
5.
《Journal of Coordination Chemistry》2012,65(19):3157-3167
Reaction of FeCl3 with one equivalent of acac (acac = pentane-2,4-dionate) and KTpMe2 (TpMe2 = hydrotris(3,5-dimethyl-pyrazol-1-yl)borate) yielded TpMe2Fe(acac)Cl (3), which upon reaction with methanolic solution of sodium azide resulted in the formation of a six coordinate compound TpMe2Fe(acac)N3 (4) with a single azide. When the reaction of FeCl3 and KTpMe2 was performed with two equivalents of sodium azide and one equivalent of 3,5-dimethylpyrazole (PzMe2H), a six coordinate cis azide compound [TpMe2Fe(PzMe2H)(N3)2] (5) was obtained. These compounds were characterized by spectroscopic methods and single crystal X-ray crystallography. Electrochemical studies of 5 show that it can be irreversibly reduced at relatively lower potential than 4. The photolysis of 5 was performed at 77 K at different wavelengths (480, 419, and 330 nm) showing that 5 was photoreduced to a high-spin Fe(II) species instead of photooxidized to Fe(V). 相似文献
6.
7.
8.
Bera Pulakesh Saha Nityananda Kumar Sanjay Banerjee D. Bhattacharya R. 《Transition Metal Chemistry》1999,24(4):425-430
New iron(III) complexes of 5-methyl-3-formylpyrazole thiosemicarbazone (HMPzTS) and 5-methyl-3-formylpyrazole-4-phenylthiosemicarbazone (HMPzPTS), namely [Fe(MPzTS)2]X and [Fe(MPzPTS)2]X respectively, where X=Cl, NO3, SCN and ClO4, have been synthesised and physico-chemically characterised by magnetic measurements (polycrystalline state), electronic, i.r., e.s.r. and Mössbauer spectra. All are cationic complexes containing two monoprotonic tridentate ligands with NNS donor sites and an anionic counterpart; they behave as 1:1 electrolytes in MeOH/DMF. Coordination to central iron(III) via the pyrazolyl nitrogen (2N), the azomethine nitrogen and the thiolato sulphur atom is confirmed in the complexes from i.r. data. E.s.r. data (RT & LNT) reveal the presence of a spin-paired iron(III) cation with d2
xyd2
yzd1
xy configuration. The 57Fe Mössbauer spectral data (RT) are commensurate with the presence of two iron(III) spin states, the percentage of each being dependent upon the counterion of the species. 相似文献
9.
1 INTRODUCTION A number of hydroxypyrones and hydroxypyridinones are being assessed or considered as orally effective chelators for treatment iron or aluminum overload[1,2]. Almost all present and potential applications involve the tris-ligand complexes of metal(III) cations, as for example in administration of iron(III) complexes for the treatment of anaemia[3], and the appropriate isotopes (e.g. 67Ga, 111In, 90Y) for radiotherapy or the isotopes of gadolinium for magnetic resonance … 相似文献
10.
A. P. Borisov V. D. Makhaev A. Ya. Usyatinskii V. I. Bregadze 《Russian Chemical Bulletin》1993,42(10):1637-1639
Thallous dicarbollide reacts with cobalt(II), iron(III) and chromium(III) chlorides without a solvent under conditions of
mechanical activation to form the corresponding carborane complexes of tervalent metals.
Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 10, pp. 1715–1717, October, 1993. 相似文献
11.
Brown EJ Whitwood AC Walton PH Duhme-Klair AK 《Dalton transactions (Cambridge, England : 2003)》2004,(16):2458-2462
The butoxy- and methoxy-derivatives (HLc, and HLb, respectively) of 1-[(ethoxycarbonyl)methyl]-3-hydroxy-2-(1H)-pyridinone, HLa, were synthesized by transesterification and the mononuclear complexes [MoO2(L(a-c))2] were obtained by the reaction of the ligands with molybdenyl acetylacetonate. The three complexes were fully characterized by (1)H and (13)C NMR spectroscopy, mass spectrometry and elemental analyses. A variable temperature NMR study showed that the N-substituents do not have a significant influence on the racemisation process of the complexes. The comparison of the crystal structure of [MoO2(Lb)2] with [MoO2(La)2] confirmed that an additional methylene group does not affect the immediate coordination environment of the molybdenum centre. The methoxy-derivative HLb was also found to produce a dinuclear complex of composition [(MoO2(Lb)O)2], the structure of which was determined by X-ray diffraction. 相似文献
12.
The complex [Fe(C14H14NO2)3](2H2O has been prepared by reaction of N-p-methylphenyl-3-hydroxy-2-ethyl-4-pyridinone with FeCl3(6H2O. A single-crystal X-ray study shows that the iron atoms lie in a trigonally distorted octahedral environment coordinated to the hydroxy and ketone oxygen atoms of three ligands in the mer configuration Mr=773.57(C42H46N3O8Fe). The crystal is hexagonal with space group P1c; a=15.943(2), c=17.612(4)?, V=3877.0(12)?3, Z=4, Dc=1.325g/cm3, (=0.445mm-1, F(000)=1634, R=0.0446, wR= 0.1154 for 3085 reflections with I >2((I). The bond lengths from iron to oxygens are 1.980(1)? for the ketone oxygens and 2.071(1)? for the hydroxy oxygens. The molecule exhibits the expected propeller shape, and the angle of the trigonal twist is 48.37(. The dihedral angles are 0.5(2)° between chelate ring plane and pyridine ring plane and 71.31(7)° between pyridine ring plane and benzene ring plane. The solvent H2O(O(3) and O(4)) molecules are linked with O(2) and O(1) by hydrogen bonds with bond lengths 2.900(1) and 2.999(1), respectively. 相似文献
13.
S. V. Larionov 《Russian Journal of Coordination Chemistry》2008,34(4):237-250
The main stages of the studies on the spin transitions in iron(III) and iron(II) complexes are considered. The types of the spin transitions and the factors responsible for the latter are reported. The problems arising during experiments in this field are discussed. 相似文献
14.
《Journal of Coordination Chemistry》2012,65(10):1677-1689
Reaction of 2-hydroxy-1-naphthaldehydebenzoylhydrazone(napbhH2) with manganese(II) acetate tetrahydrate and manganese(III) acetate dihydrate in methanol followed by addition of methanolic KOH in molar ratio (2 : 1 : 10) results in [Mn(IV)(napbh)2] and [Mn(III)(napbh)(OH)(H2O)], respectively. Activated ruthenium(III) chloride reacts with napbhH2 in methanolic medium yielding [Ru(III)(napbhH)Cl(H2O)]Cl. Replacement of aquo ligand by heterocyclic nitrogen donor in this complex has been observed when the reaction is carried out in presence of pyridine(py), 3-picoline(3-pic) or 4-picoline(4-pic). The molar conductance values in DMF (N,N-dimethyl formamide) of these complexes suggest non-electrolytic and 1 : 1 electrolytic nature for manganese and ruthenium complexes, respectively. Magnetic moment values of manganese complexes suggest Mn(III) and Mn(IV), however, ruthenium complexes are paramagnetic with one unpaired electron suggesting Ru(III). Electronic spectral studies suggest six coordinate metal ions in these complexes. IR spectra reveal that napbhH2 coordinates in enol-form and keto-form to manganese and ruthenium metal ions in its complexes, respectively. ESR studies of the complexes are also reported. 相似文献
15.
New complexes of iron(III) of the type [(μ-Cl)2Fe2{η
2-(opbz)4] (1) and [(Cl)2Fe{η
2-(opbz)] (2) [Hopbz = {2-(o-hydroxyphenyl)}-benzimidazole, η
2 = Number of connectivity sites involved in bonding the metal] have been synthesized by the interactions of iron(III) chloride
with the corresponding ligand (Hopbz) in 1:2 and 1:1 molar ratio(s) in hot EtOH. The complex (1) was further treated with various sodium salts of Schiff bases (sb) [Na(o-smab), Na(p-smab) and Na(sap)], alkoxo-Na(OPri), aryloxo-Na(OAr) and tetraisopropoxyaluminate [Na{Al(OPri)4] in a 1:1 molar ratio (in THF–benzene medium) to produce derivatives of the type: {(η
2-(sb) Fe{η
2-opbz)2] (3), (4) and (5), [(μ-OPri)2Fe2{η-(opbz)4}] (6) [(μ-OAr)2Fe2{η-(opbz)4}] (7) and [(μ-OPri)2Al(OPri)2-Fe{η-(opbz)2}] (8). All these derivatives were characterised by elemental analysis, spectral (IR, UV–visible and FAB-mass) and magnetic susceptibility
measurements. On the basis of these studies, a distorted octahedral (dimeric) geometry around iron(III) for the complexes
(1), (6), (7) and (8) have been suggested. 相似文献
16.
17.
Complexes of yttrium(III) and lanthanides(III) with 4-hydroxy-3,5-dimethoxybenzoic (syringic) acid were obtained as solids
with metal to ligand mole ratio of 1: 3. The compounds were characterized by elemental analysis, IR spectroscopy, X-ray diffraction
patterns, solubility, and thermal studies. The complexes are sparingly soluble in water and stable at room temperature. Compounds
of light lanthanides (from La to Nd) are hydrated and they crystallize in a triclinic system. When heated, they lose water
molecules in one step and in the next step they decompose to oxides. Complexes of yttrium and other lanthanides are anhydrous
and crystallize in a monoclinic system. They are stable up to 300°C and then decompose to oxides. As the coordination number
of lanthanide ions is usually equal to 9 or 8, one can suppose that hydroxy or methoxy groups take part in the coordination
of these metal ions. 相似文献
18.
John Burgess Simon A. Parsons Kuldip Singh Emma Waltham Pilar López Francisco Sánchez Maria Rangel Walkiria Schlindwein 《Transition Metal Chemistry》2008,33(5):553-561
Reactions of hydrated ruthenium chloride with 2-methyl-3-hydroxy-4-pyranone, ethylmaltol (etmaltH) and with 1,2-dimethyl-3-hydroxy-4-pyridinone
(dmppH) are described. The former results in the formation of Ru(etmalt)3, but the course of the latter depends on conditions, producing the earlier-characterised Ru(dmmp)3Cl in ethanol–water solution, Ru(dmmp)3 in aqueous solution under mild conditions, and Ru(dmpp)2(H2O)2 after extended refluxing. EXAFS studies established ruthenium-oxygen distances in Ru(etmalt)3 and in Ru(dmmp)3 · 6H2O. Solubilities of Ru(dmmp)3 in methanol–water mixtures reveal greater solubility in methanol than in water, and indications of a modest solubility maximum,
and thus synergic solvation, in methanol-rich mixtures. 相似文献
19.