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1.
Summary Crystalline copper(I) complexes of the general formula [LCuCl] and [L2CuCl] were prepared for imidazolidine-2-thiones and 1,3-diazinane-2-thiones by the reduction of copper(II) halides with an excess of the ligands. The13C n.m.r. and i.r. spectra of these complexes are consistent with thione sulphur (ligand) donation in all cases. The magnitude of the high-field shift in the13C resonance of the thioureide carbon in the complexes as compared with that of the free ligands is interpreted in terms of coordination geometry around the metal atoms. A comparison of the chemical shifts for gold(I), silver(I) and copper(I) revealed a displacement ofca. 6–8 ppm for the mono- and 2–4 ppm for the bis-complexes, respectively.  相似文献   

2.
Conclusions The reaction of 1,3-diselenolane-2-selenone with dimethyl acetylenedicarboxylate, and subsequent saponification and decarboxylation of the formed dimethyl ester of 1,3-diselenol-2-selenone-4, 5-dicarboxylic acid, gave 1,3-diselenol-2-selenone, whose molecular structure was determined.Translated from Izvestiya Akademii Nauk SSSR, Seriya Khimicheskaya, No.1, pp.179–181, January, 1976.The authors express their gratitude to M. L. Khidekel for his interest in the work and a discussion of the results, and to G. V. Lagodzinskaya for taking the NMR spectra.  相似文献   

3.
Phosphine sulfides and their gold(I) complexes with general formula R3P=S—Au—X (X = Cl, Br or CN) were prepared and characterized by elemental analyses, i.r. and 31P-n.m.r. spectroscopy. A decrease in the i.r. frequency of the P=S bond in the ligands upon complexation, is indicative of S coordination to gold (I). The 31P-n.m.r. spectra revealed that electronegativity of the substituents and angles between them were the two most important factors influencing the 31P-n.m.r. chemical shifts. The phosphorus resonance was observed to be more downfield in alkyl substituted phosphine sulfides as compared to the aryl substituted phosphine sulfides. Ligand scrambling in the Cy3P=S—Au—CN complex in solution, to form [(Cy3P=S)2Au]+ and [Au(CN)2], was investigated by 13C and 15N-n.m.r. spectroscopy. Equilibrium constants (K eq) for scrambling of the Cy3P=S—Au—CN complex and for its analogue, Cy3P=Se—Au—CN were measured by integrating the 13C-n.m.r. at 297 K and were found to be 0.147 and 1.81 respectively.  相似文献   

4.
Six rhodium–carbene complexes (2a–f) have been prepared and the new compounds characterized by C, H, N analyses, 1H-n.m.r. and 13C-n.m.r. Phenylboronic acid reacts with aldehydes in the presence of a catalytic amount of rhodium(I)–carbene complex, RhCl(COD)(1,3-dialkylbenzimidazolidin-2-ylidene), (2a–f), to give the corresponding aryl secondary alcohols in good yields.  相似文献   

5.
Summary Benzothiazole-2-selenone, BTSeH, was prepared by treating 2-chlorobenzothiazole with Na2Se, and the 6-ethoxy analogue (EtOBTSeH) was obtained similarly. From BTSeH, the species [R4N][BTSe] (R=Me, Et Bu-n), Zn-(BTSe)2(pyr)2, (BTSe)2, Zn(BTSe-)2I2 and Me2C=CH-CH(SSeTB)Me were obtained. Addition of [n-Bu4N] [BTSe] to [Zn(BTSe)2] n afforded [n-Bu4N] [Zn(BTSe)3(H2O)]. The Se n.m.r. spectra of these species are briefly reported.  相似文献   

6.
A number of mixed ligand complexes of gold(I) with various selenones and Ph3P, [Ph3PAuSe=C<]Cl have been prepared and characterized by elemental analyses, i.r. and n.m.r. methods. A decrease in the i.r. frequency of the C=Se mode of selenones upon complexation is indicative of gold(I) binding viaa selenone group. An upfield shift in the 13 C-n.m.r. for the C=Se resonance of selenones and downfield shifts in 31P-n.m.r. for the Ph3P moiety are consistent with the selenium coordination to gold(I). Available data in the literature suggest that P–Au–Se type complexes are usually linear.  相似文献   

7.
Coordination Chemistry of 1,3-Thiaselenole-2-thione-4,5-dithiolate (dmits) – Comparison with 1,3-Dithiole-2-thione-4,5-dithiolate (dmit) Synthesis and properties of metal(II) and/or metal(III)-bis-chelates of 1,3-thiaselenole-2-thione-4,5-dithiolate (dmits) of the general type (Bu4N)n[M(dmits)2] (n = 2: M = Zn, Cd, Hg, Ni, Cu, Pd; n = 1: M = Au, Ni) are described. By comparison of the i.r., 13C-n.m.r., epr spectra and cyclovoltammetric data of chelates of dmits and those of 1,3-dithiole-2-thione-4,5-dithiolate (dmit) the consequences of the substitution of selenium for sulfur on position 3 of the heterocyclic ligand dmit are discussed.  相似文献   

8.
Summary Pd(CN)2 reacts with imidazolidine-2-thione (Imt), 1,3-diazinane-2-thione(Diaz), 1,3-diazipnane-2-thione (Diap) and their derivatives to yield complexes of stoichiometry [PdL2(CN)2] or [PdL(CN)2] (L = Imt, Diaz or Diap and L = Imt having N-Me, Et or Pr substituents), which were characterized by elemental analysis, i.r., 1H and 13C n.m.r. spectroscopy. Both mono- and bis ligand complexes are thought to be square planar with the monoligand binding to metal via sulphur (bridging) and the bis ligand via the monodentate thione group. The 13C enriched Pd(13CN)2 complex was prepared and the 13C n.m.r. recorded. The C-2 resonance of 13C n.m.r. of Imt, Diaz or Diap complexes of the copper(I), silver(I), gold(I) and palladium(II) were compared.  相似文献   

9.
Summary Seleno-cysteamine, seleno-cysteine and seleno-ethanoic acid react with aurothiomalate in aqueous solution to give [Au(selenoate)2] complexes. The13C-n.m.r. chemical shift differences between thiolates and their analogous selenoates complexes with gold(I), as [Au(thiolate)2] and [Au(selenoate)2], are compared and the [Au(Secysteine)2] complex was found to be the most stable.  相似文献   

10.
Summary New compounds of formula [AuL(PMe3)]Cl [L = imidazolidine-2-thione (Imt), 1,3-diazinane-2-thione (Diaz), 1,3-diazepine-2-thione (Diap) and their derivatives] have been synthesized and characterized by elemental analysis, and i.r., 13C- and 31P-n.m.r. spectroscopies. The Diap ligand, which incorporates the thione in a seven-membered heterocyclic ring, binds more strongly to AuI compared to its Diaz (six-membered ring) and Imt (five-membered ring) analogues.  相似文献   

11.
N,N’-Polymethylenebis(thiosalicylidene)iminate and macrocyclic dithiadiazadibenzocycloalkadiene complexes of nickel(II) were synthesized and their electrochemical and spectroscopic properties were studied. Dithiadiazadibenzocycloalkadiene complexes containing two DMSO molecules coordinated to Ni2+ and two outer-sphere ClO4 anions were synthesized by the reaction of the corresponding macrocyclic ligands with Ni(ClO4)2·6H2O. The structure of 3,6-dithia-10,14-diazadibenzo[a,g]cyclopentadeca-9,14-dienylnickel(II)[bis(dimethyl sulfoxide) bis-perchlorate] was established by X-ray diffraction. The UV-Vis spectroscopic data are consistent with octahedral structures of diiminobis(sulfide) complexes, a square-planar structure of the thiosalen complex, and distorted tetrahedral structures of other diiminodithiolate complexes. The reaction of S-tert-butylthiosalicylaldehyde with hydrazine hydrate afforded di(ortho-tert-butylthiobenzal)azine. The reaction of the latter with anhydrous NiCl2 produced a colored complex with the simplest molecular formula Ni(C16H12N2S2) in 15% yield. Semiempirical PM3(tm) calculations and the results of UV-Vis, ESR, and 1H NMR spectroscopy demonstrate that this complex has most probably a dimeric structure, in which two Ni centers adopt a nearly square-planar configuration. The complexes are clearly divided into two types according to their electrochemical behavior in DMF solutions. The type 1 is characterized by reversibility of the first reduction steps. The type 2 is characterized by irreversible two-electron reduction as the first step accompanied by deposition of Ni metal on the electrode surface. Rapid electrochemically initiated alkylation occurs in the presence of various alkylating agents (BunI, BunBr, (DmgH)2CoCH3) in a solution of complex 1 in DMF.__________Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 1, pp. 169–183, January, 2005.  相似文献   

12.
The 1,3-bis(2-benzimidazyl)-2-thiapropane (TP2) and 1,5-bis(2-benzimidazyl)-3-thiapentane (TP3) ligands form 5-coordinate square pyramidal monometallic complexes with PdCl2. In both complexes the ligands act as chelating tridentate, through two of the nitrogen atoms in the imidazole ring and the sulphur atom of the bridging group. The ligands and complexes were characterised by analytical data and by modern spectroscopic methods such as FT-Raman, i.r., 1H and 13C-n.m.r. spectra.  相似文献   

13.
2-Keto-D-gluconate (kG) is naturally produced in soils, sediments and rock faces through the microbial oxidation of glucose. Studies have qualitatively shown kG to enhance the dissolution of soil minerals. However, quantitative information, such as the log K values for the formation of metal–kG complexes, are not available. This paper presents the results of potentiometric titration studies that employ H+ and Ca2+ ion selective electrodes (ISEs) to determine the conditional ion association constants (log Q values) for the protonation and deprotonation of kG and the formation of Ca–kG complexes. The experimentally-determined log Q values were then converted to the corresponding ion association constants (the zero ionic strength condition; log K values) by employing a modified Davies equation for charged species and the Setchenów equation for neutral species. The log K values were determined by potentiometric titrations at constant kG concentration, varied ionic strengths, 25 or 22 C, and in the absence of CO2. The computer model GEOCHEM-PC was used to determine the aqueous speciation of ions other than kG and the computer model FITEQL was used to estimate conditional log Q values for reactions in the various chemical models. Based on our evaluations, equilibrium constants for the following reactions were determined: H++ kG ⇌ HkG0, log Ka1 = (3.00 ± 0.06), kG⇌ H–1kG2–+ H+, log Ka–1 = –(11.97 ± 0.41), and Ca2++ kG⇌ CakG+, log K101 = (1.74 ± 0.04).  相似文献   

14.
Palladium(II) and platinum(II) complexes containing the mixed ligands tertiary diphosphines Ph2P(CH2) n PPh2, (n = 1–4) and benz-1,3-imidazoline-2-thione, benz-1,3-oxazoline-2-thione or benz-1,3-thiazoline-2-thione have been prepared and characterized by elemental analysis, magnetic susceptibility, molar conductance and i.r. spectral data. 31P–{1H}-n.m.r. data have been applied to characterize the produced linkage isomers.  相似文献   

15.
Paramagnetic shifts in the 1H n.m.r. spectra were observed for high-spin Co2+ complexes with 12--14-membered tetraazamacrocycles incorporating two amide groups and two pendant carboxymethyl groups. The pseudocontact term due to the dipolar interaction between the metal ion and the resonant protons was calculated on the basis of X-ray structures, and the Fermi contact term due to spin delocalization was determined. The ethylenediamine moiety of the ligand molecule is coordinated in an unsymmetric manner, even in solution, and internal motion (involving conformational change of the macrocyclic frame and exchange of coordinate bonds) is much slower than the n.m.r. observation frequency. In the 12-membered macrocyclic complex Co(L12), three of the eight CH2 groups fix their orientation in the n.m.r. time scale; in Co(L13) only one CH2 group fixes its orientation; in Co(L14) all CH2 groups undergo a rapid reorientation. The facility in internal motion increases with the ring size, and shows a correlation with the chemical stabilities of these Co2+ complexes against oxidation; to atmospheric oxygen, Co2+(L12) is the most resistant and Co2+(L14) is the most susceptible.  相似文献   

16.
Summary. The structure of 2-amino-4-aryl-1-arylideneaminoimidazoles in DMSO-d6 solution was investigated by means of NMR spectroscopic methods (1H, 13C, 15N). From these data the (E)-configuration at the excocyclic C=N bond and a strong preference for the conformer with the imidazole H-5 and the N=CH proton being spatially close (s-trans regarding the N–N bond) can be concluded. Reaction of the title compounds with acetic anhydride leads to mono and diacylation at the 2-amino group, whereas treatment with pivalic anhydride exclusively affords the corresponding monoacyl product. The mono- and diacylation products exhibit similar configurational and conformational properties as the parent compounds.  相似文献   

17.
New oxygen carriers have been synthesized by the interaction of the CuII/NiII derivative of the bis(5-nitroindazolyl)methane complex with 14-membered 1,8-dihydro-1,3,6,8,10,13-hexaazacyclotetradecane (M-mac), where M=FeIII, NiII, CoII, to yield binuclear complexes. These complexes have been characterized by physico-chemical methods: elemental analysis, i.r., 1H-n.m.r., 13C-n.m.r., 2D cosy n.m.r., e.p.r., u.v.–vis. spectroscopy and cyclic voltammetry. A representative binuclear FeIII–CuII complex was chosen to interact with H2O2 to elucidate the mechanistic pathway of oxygen binding in solution spectrophotometrically, and also by cyclic voltammetry. Hydrogen peroxide exhibits two mechanisms for binding, either (i) homolysis or (ii) heterolytic cleavage. The mode of H2O2 binding can be hazardous in (i) due to the threat of oxidative damage to the cellular structure, proteins and metabolites, or eco-friendly as in (ii) which produces innocuous products such as water and dioxygen. This study aims to combat the problems associated with H2O2 binding in nature by producing a parallel study on model compounds.  相似文献   

18.
New trivalent gold (d8 electronic configuration) halide complexes with guanidino–pyrimidines have been synthesized and delineated. The complexes have been identified and characterized by elemental analysis, u.v.–vis. electronic absorption spectra, i.r. oscillation spectra and by 1H-n.m.r. and 13C-n.m.r. spectra. All substituted guanidine ligands in these chelates form part of a six-membered pseudo-heterocyclic ring where the nitrogen atoms of the guanidine group and the nitrogen atom of pyrimidine, piperidine or the morpholine heterocyclic ring bond to the metal.  相似文献   

19.
Silver(I) cyanide complexes of various thiones (imidazolidine-2-thione, diazinane-2-thione and their derivatives) have been prepared and characterized by elemental analysis, i.r. and n.m.r. (1H, 13C, 15N and 107Ag) spectroscopy. It appears from the i.r. data that six out of the ten complexes are nonionic [>C=S—Ag—CN] while the remaining four exist as ionic species [Ag(>C=S)2]+[Ag(CN)2] in the solid state. An upfield shift in the 13C-n.m.r. and downfield shifts in the 1H-, 15N- and 107Ag-n.m.r. spectra are consistent with the sulfur coordination to silver(I). The n.m.r. data shows that the [>C=S—AgCN] complexes are stable in solution and do not undergo redistribution.  相似文献   

20.
Starting from Ba2(1,3-pddadp)·8H2O (1,3-pddadp=1,3-propanediamine-N,N′-diacetate-N,N′-di-3-propionate ion) and CoSO4, a new hexadentate [CoII(1,3-pddadp)]2− complex has been prepared. The trans(O6) geometry of this complex was confirmed by comparison of its i.r. and u.v.–vis. spectra with those of [CoII(1,3-pdta)]2− (1,3-pdta is the 1,3-propanediaminetetraacetate ion) and trans(O6)-[CoIII(1,3-pddadp)] complexes of known X-ray crystal structure. Magnetic and electrolytic conductivity properties of these complexes have also been discussed.  相似文献   

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