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1.
Karyotypes, sex chromosome systems and meiotic characteristics are reported for ten spider species belonging to the families Gnaphosidae, Philodromidae, Salticidae, Oxyopidae and Sicariidae by using standard Giemsa staining. The male diploid numbers (2n) and sex chromosome systems are as follows: Berinda hakani 2n = 22 (X1X2), Berinda ensigera 2n = 22 (X1X2), Trachyzelotes lyonneti 2n = 22 (X1X2), Trachyzelotes malkini 2n = 22 (X1X2), Zelotes caucasius 2n = 22 (X1X2) (Gnaphosidae); Thanatus pictus 2n = 28 (X1 X2), Tibellus macellus 2n = 24 (X1 X2) (Philodromidae); Neon reticulatus 2n = 21 (X0) (Salticidae); Peucetia virescens 2n = 28 (X1X2) (Oxyopidae) and Loxosceles rufescens 2n = 21 (X1 X2Y) (Sicariidae). All species have monoarmed chromosomes with the exception of L. rufescens that has biarmed (metacentric and submetacentric) chromosomes. The obtained data are the first results for the genera Berinda, Trachyzelotes and Neon. Additionally, with the exception of L. rufescens, all species are being chromosomally analyzed for the first time.  相似文献   

2.
Combination of (1S,2S)-cyclopentanediylbis(diphenylphosphine) with [Ru(η4-C8H12){η3-(CH2)2CMe}2] afforded the chelate complex [Ru{η3-(CH2)2CMe}2{(1S,2S)-C5H8(PPh2)2}] (1), which gave (OC-6-13)-[RuCl2{(1S,2S)-C5H8(PPh2)2}{(1S,2S)-Ph2PCH(Ph)CH(Me)NH2}] (2) upon reaction with methanolic HCl in acetone, followed by the addition of the β-aminophosphine in DMF. The (P  N)2-chelated complexes (OC-6-13)-[RuCl2{(1S,2S)-Ph2PCH(Ph)CH(Me)NH2}2] (3) and (OC-6-13)-[RuCl2{(1R,2S)-Ph2PCH(Ph)CH(Me)NH2}2] (4) resulted from RuCl3 · 3H2O and the P,N ligands under reducing conditions. The crystal structures of 3 and 4 were determined by single-crystal X-ray diffraction. Following activation by KOBu-t in isopropanol, compounds 24 catalyzed the enantioselective transfer hydrogenation of acetophenone with i-PrOH as the hydrogen source as well as the direct hydrogenation of the ketone by H2 in low to moderate e.e. (up to 67%).  相似文献   

3.
New complexes of the general formulae Co(o-LH)2X2 (XCl, NCS), Co(o-LH)2Br2·EtOH (EtOHethanol), M(o-LH)(NO3)2 (MCo, Ni), Ni(o-LH)2X2 (XCl, Br, NCS), Cu(o-L)X (XCl, Br), Zn(o-LH)X2 (XCl, Br), Pd(o-L)Cl, Pt(o-LH)2Cl2·H2O, M(m-LH)Cl2·nH2O (MCo, Ni, Pd; n=0, 0.5, 1), Cu(m-LH)Cl2·EtOH, M(m-LH)2Cl2·nH2O (MCo, Zn, Pt; n=0, 1), M(m-LH)Br2 (MCu, Zn), M(m-LH)2Br2 (MCo, Ni), Co(m-LH)(NCS)2 and Co(m-LH)2(NCS)2, where o-LH=N-(2-aminophenyl)quinoline-2′-carboxamide and m-LH=N-(3-aminophenyl)quinoline-2′-carboxamide, have been prepared. The complexes were characterised by elemental analyses, conductivity measurements, X-ray powder patterns, thermogravimetric analyses, magnetic moments and spectral (1H NMR, IR, and electronic) studies. Copper(II) and palladium(II) promote amide deprotonation at nearly acidic pH on coordination with o-LH. A variety of stereochemistries is assigned for the complexes prepared. The deprotonated copper(II) and the nickel(II) and palladium(II) complexes of m-LH appear to be polymeric. The neutral amide group of the ligands is coordinated to the metal ions through oxygen, while N(amide)-coordination is observed for the deprotonated complexes. Coordination of the secondary amide group is not observed for Zn(m-LH)2Cl2, Pd(m-LH)Cl2·0.5H2O and platinum(II) complexes. The neutral ligand o-LH shows bidentate N(ring), O-behaviour, while the anion o-L exhibits tridentate N,N,N-coordination. m-LH acts as a monodentate, bidentate and tridentate ligand depending on the metal ion, the anion and the preparative conditions.  相似文献   

4.
The complex trans-PtCl(p-Tol)(SEt2)2 is obtained from the reaction of [Pt(p-Tol)2(SEt2)]2 with PtCl2(SEt2)2 and SEt2 in mole ratio 1:2:2. The mono(p-tolyl)platinum(II) and bis(p-tolyl)platinum(II) complexes of diethylsulfide react with 2,2′-bipyridine to form the complexes PtX(p-Tol)(bpy) (X=p-Tol, Cl) and are useful reagents for organoplatinum chemistry. X-ray crystal structures are presented for square planar PtCl(p-Tol)(bpy) and the centrosymmetric dimer [Pt(p-Tol)2(μ-SEt2)]2.  相似文献   

5.
《Inorganica chimica acta》1987,127(1):95-101
The pentadentate ligand 2,6-diacetylpyridinedisemicarbazone, DAPSC, reacts with Cr(NO3)3·9H2O and forms two kinds of complexes. At pH=3, the ligand is singly-deprotonated and crystals of [Cr- (DAPSCH)(H2O)2](NO3)2·H2O (Ia) are obtained. Evaporation of a solution at pH=0, yields crystals of [Cr(DAPSC)(H2O)2](NO3)3·2H2O (II) in which the ligand is fully protonated. The reaction of DAPSC with UO2(O2CCH3)2 in methanol, followed by crystallization of the product from DMSO yields crystals of [UO2(DAPSC2H)(H2O)]·2DMSO (III) in which the ligand is fully deprotonated. Compound Ia is monoclinic, space group P21/n with a=11.746(1), b=14.752(2), c=11.866(1) Å,β=105.53(2)°, V= 1981(1) Å3 and Z=4. Compound II is monoclinic, space group, P21/n with a=38.000(3), b= 14.939(2), c=8.233(1) Å, β=96.12(2)°, V= 4647(1) Å and Z=8. Compound III is monoclinic, space group P21/n with a=18.048(2), b=15.207(2), c=8.842(1) Å,β=97.72(2)°, V=2405(1) Å3 and Z=4. The structures were refined using 2084, 4169 and 2516 reflections to R values of 4.4%, 7.8% and 4.8% respectively.  相似文献   

6.
Complexes of the types cis- and trans-Pt(amine)2I2 were studied by spectroscopic methods, especially by multinuclear NMR spectroscopy. In 195Pt NMR, the cis diiodo compounds with primary amines were observed between −3342 and −3357 ppm in acetone, while the trans compounds were found between −3336 and −3372 ppm. For the secondary amines, the chemical shifts were observed at lower fields. In 1H NMR, the trans complexes were observed at higher fields than the cis compounds, while in 13C NMR, the reverse was observed. The 2J(195Pt-1H) and 3J(195Pt-1H) coupling constants are larger for the cis compounds (ave. 67 and 45 Hz, respectively) than for the trans isomers (ave. 59 and 38 Hz). In 13C NMR, the values of 2J(195Pt-13C) and 3J(195Pt-13C) were also found to be larger for the cis complexes (ave. 17 and 39 Hz versus 11 and 28 Hz). There seems to be a slight dependence of the pKa values of the protonated amines or the proton affinity in the gas phase with the δ(Pt) chemical shifts. The crystal structures of eight diiodo complexes were determined. These compounds are cis-Pt(CH3NH2)2I2, cis-Pt(n-C4H9NH2)2I2, cis-Pt(Et2NH)2I2, trans-Pt(n-C3H7NH2)2I2, trans-Pt(iso-C3H7NH2)2I2, trans-Pt(n-C4H9NH2)2I2, trans-Pt(t-C4H9NH2)2I2 and trans-Pt(Me2NH)2I2. The Pt-N bond distances located in trans position to the iodo ligands were compared to those located in trans position to the amines. The Pt-N bond in cis-Pt(Et2NH)2I2 are much longer than the others, probably caused by the steric hindrance of the two very bulky ligands located in cis positions.  相似文献   

7.
The complexes [Re{MeN(CH2CH2O)(CH2CH2OH)-κ3N,O,O}(CO)3] (1), [Re{N(CH2CH2O)(CH2CH2OH)23N,O,O}(CO)3] (2), [Me3NH]2[(OC)3Re{N(CH2CO2)23N,O,O}CH2CH2{N(CH2CO2)23N,O,O}Re(CO)3] (3), [Me3NH]2[Re22-2,6-(O2C)2(C5H3N)-κ3N,O,O}2(CO)6] (4) and [Re22-2,6-(OCH2)(C5H3N)(CH2OH)-κ2N,O}2(CO)6] (5) were synthesized in high yields via the reactions of [Re2(CO)10] and Me3NO with MeN(CH2CH2OH)2, N(CH2CH2OH)3, EDTA, pyridine-2,6-dicarboxylic acid and pyridine-2,6-dimethanol, respectively. Complexes 1-5 were characterized by IR and 1H NMR spectroscopy, elemental analysis and X-ray crystallography.  相似文献   

8.
We have isolated and characterized a dimer derivative of the extensively studiedEscherichia coli insertion sequence IS2. The dimer structure — called (IS2)2 — consists of two IS2 elements arranged as a direct repeat, separated by 1 bp. The junction between the (IS2)2 dimer and target sequences is located at various positions in independent isolates; however, one position was preferred. The transposition of (IS2)2 into a target plasmid resulted in cointegrate-type structures. The transposition frequency of the (IS2)2 dimer itself was significantly higher than that of the isogenic monomer IS2 insertion. The poor stability and high activity of (IS2)2 indicates that this is an active transposition intermediate. The mode of transposition of (IS2)2 is analogous to the joined dimer model described in the case of (IS21)2 and (IS30)2.  相似文献   

9.
The coordination chemistry of thioether functionalized cyclodiphosphazane ligand, cis-{tBuNP(OCH2CH2SCH3)}2 (1) is described. The reactions of 1 with [Pd (COD)Cl2] in 1:1, 1:2 and 2:1 M ratios afforded cis-[PdCl2{tBuNP(OCH2CH2SCH3)}2] (2), cis-[{PdCl2}2{tBuNP(OCH2CH2SCH3)}2] (3) and trans-[PdCl2{(tBuNP(OCH2CH2SCH3))2}2] (4), respectively. Treatment of 1 with [Pd(PEt3)Cl2]2 or [PdCl(η3-C3H5)]2 in appropriate molar ratios produce the mono- and binuclear complexes [PdCl2(PEt3{tBuNP(OCH2CH2SCH3)}2] (5) and [{PdCl(η3-C3H5)}2{tBuNP(OCH2CH2SCH3)}2] (6) in good yield. The reaction of 1 with [{Ru(p-cymene)Cl2}2] afforded the mononuclear cationic complex, [{(p-cymene)RuCl{tBuNP(OCH2CH2SCH3)}2]Cl (7), whereas the reactions of [Rh(COD)Cl]2, [Pt(COD)Cl2] and [Au(SMe2)Cl] with 1 yielded the corresponding P-coordinated neutral complexes, [RhCl(COD){tBuNP(OCH2CH2SCH3)}2] (8)cis-[PtCl2{tBuNP(OCH2CH2SCH3)}2] (9), respectively. The binuclear palladium(II) complex 3 was found to be an effective catalyst for the Suzuki-Miyaura cross-coupling reactions.  相似文献   

10.
11.
Reaction of molybdate and phosphate precursors in the presence of 3d transition metal ions and pyrazole (pz) under hydrothermal condition resulted in the crystallization of four new phosphomolybdate cluster based solids: (pz)2[{Co(pz)4}5{P2Mo5O23}2]·6H2O (1), (pz){Ni(pz)4(H2O)2}[{Ni(pz)4}5{P2Mo5O23}2]·2H2O (2), {Cu(pz)4(H2O)2}[{Cu(pz)4}{Cu(pz)4(H2O)}{P2Mo5O23}]·2H2O (3) and (pz)[{Zn(pz)3}3{P2Mo5O23}]·2H2O (4). In all the solids, a metal complex {M(pz)n} covalently links{P2Mo5O23} clusters to form a chain. The dimensionality of the structures differs in the way the chains link or self assemble with counter ions and water molecules. To the best of our knowledge, 4 is the first example of a zinc complex incorporated with {P2Mo5O23} cluster. The paper discusses the self assembly occurring between in situ metal pyrazole complex and phosphomolybdate clusters through coordinate/covalent and noncovalent interactions during crystallization of a particular solid.  相似文献   

12.
《Inorganica chimica acta》1988,153(4):219-225
The preparations are reported of [Rh(RCO2)2L]2 [where R = CH3, C2H5, and CH3OCH2; L = 6-chloro-2-methoxy-9-[2(NR′2)ethyl]aminoacridine (R′ = H, CH3)]. X-ray structural studies have been carried out on two of the compounds [ R = C2H5, R′ = H, (1); R = CH3, R′ = CH3, (2)]. Compound 1 is monoclinic, space group C2/c, with a = 20.864(11), b = 15.736(4), c = 14.402(4) Å, β = 93.14(4)°, V = 4721 Å3, and Z = 4; 2 is monoclinic, space group P21/n, a = 8.861(2), b = 23.089(10), c = 12.014(2) Å, β = 105.84(2)°, V = 2365 Å3, and Z = 2. Both compounds comprise the standard dinuclear rhodium(II) carboxylate unit with the substituted acridine ligands coordinated to rhodium in the axial positions, via the NH2 group nitrogen in 1 and the N(CH3)2 nitrogen in 2.The dimethyl substitution on the tertiary amine group in 2, and an associated conformational change in the diamine chain, result in an increased separation of the acridine ligand from the metal centre. There is a pronounced acridine base stacking in 1 but not in 2.  相似文献   

13.
The photolytic CO-substitution reaction of the organoiron thiocarboxylate complexes CpFe(CO)2SCOR (R=CH3, 2-CH3C6H4, 2-NO2C6H4, 4-NO2C6H4, 3,5-(NO2)2C6H3) with diphosphines (Ph2P(CH2)nPPh2) [n=1 (dppm), n=2 (dppe), n=3 (dpppr), n=4 (dppb), n=5 (dppp), n=6 (dpph)] at room temperature using 1:2 (metal-ligand) molar ratio afforded exclusively the disubstituted complexes CpFe(Ph2P(CH2)nPPh2)SCOR when n=1, 2 and 3 and the monosubstituted analogs CpFe(CO)(Ph2P(CH2)nPPh2)SCOR when n=4, 5 and 6. This reaction was found to be strongly influenced by the backbone length of the diphosphine ligand, the nature of the R group of the thiocarboxylate moiety and the metal-ligand molar ratios. The crystal structure of CpFe(dppm)SCO(3,5-(NO2)2C6H3) was determined.  相似文献   

14.
The synthesis is reported of a series of ternary cationic complexes of general form [Co(R,Rpicchxn)(ARMA)+ (where picchxn is the N4 tetradentate N,N′-di(2-picolyl)-1,2-diaminocyclohexane and ARMA is a bidentate α-substituted-α-aminomalonate dianion). The aminomalonic acid (NH2· C(COOH)2·R) derivatives investigated have R = -CH3 (AMMAH2), -CH2·CH3 (AEMAH2), -CH2· CH2·CH3 (APMAH2), -CH2·(CH2)2·CH3 (ABuTMAH2, -CH2·C6H5 (ABMAH2), -CH2·(p-C6H4)· C(CH3)3 (ABuBMAH2) and -CH2·C10H7 (ANMAH2). The isomeric species in the complex products have been separated using cation exchange chromatography and each isomer has been characterized using NMR and circular dichroism techniques. In each synthesis the major isomeric product obtained has a Λ-β1 topology. However, where ARMAH2 possesses a lengthy alkyl sidechain trace amounts of Δ-α-[Co(R,R-picchxn)(ARMA)]+ isomers have been observed during the synthetic reactions. This unusual isomeric form readily undergoes inversion of its absolute configuration in DMSO solution to yield the more thermodynamically stable Λ-β1-[Co(R,R-picchxn()R-ARMA)]+ species stereospecifically.In the case of Λ-β1-[Co(R,R,-pichxn)(S-APMA)]ClO4·2NaClO4·5H2O the crystal structure has been determined. The compound crystallises in the orthorhombic space group P212121, with a = 10.056(3),b = 16.475(7),c = 23.370(7)Å and Z = 4. The structure was refined to R = 0.079 for 4460 non-zero reflexions, and confirms the absolute configuration of each chiral centre to be consistent with the NMR and circular dichroism interpretations.The decar☐ylation of these chelate ARMAH2 derivatives under acid conditions leads to corresponding complexes containing mixtures of coordinated R-andS-α-aminoacids in various ratios. This ratio has been determined in each case, and factors which may influence the degree of chiral induction observed are discussed.  相似文献   

15.
《Inorganica chimica acta》2006,359(9):2819-2825
The synthesis and structures of isomeric lithium diamine-bis(phenolate) complexes are reported. Deprotonation of the ligands, H2O2NN′tBu [Me2NCH2CH2N(CH2ArOH)2, Ar = 3,5-C6H2-tBu2] and H2O2N2tBu [HOArCH2NMeCH2CH2NMeCH2ArOH, Ar = 3,5-C6H2-tBu2], in diethyl ether affords base-free lithium complexes Li2O2NN′tBu (1) and Li2O2N2tBu (2) upon solvent removal. The dioxane adduct of (1) exhibits a polymeric structure in the solid-state, whereas the dioxane adduct of (2) possesses a dimeric structure. The syntheses of K2O2NN′tBu (3), K2O2N2tBu (4), Zr(O2NN′tBu)Cl2 (5) and Y(O2NN′tBu)Cl(THF), (6), are also reported. The transition metal complexes were isolated in good yields via salt metathesis reactions using 1 or 3.  相似文献   

16.
The reaction of the ruthenium complexes RuCl2(PPh3)3, RuCl2(PPh3)4, RuCl2(PMe3)4, RuCl2(Me2SO)4, or RuBr2(PPh3)3 with the tripod tetrakis(tertiary) phosphine P(CH2CH2CH2PMe2)3 gave the compounds cis-RuCl2 [P(CH2CH2CH2PMe2)3] (1) and cis-RuBr2[P(CH2CH2CH2PMe2)3] (2). The coordination geometry of 1 and 2 was derived from the ABX2 type 31P NMR patterns of the complexes, as well as from an X-ray structure determination for the chloride 1. Crystals of 1 were found to be monoclinic, space group P21/n (Z = 4), with a = 942.0(3), b = 1446.2(4), c = 1680(1) pm, and β = 104.99(4)°. Anisotropic refinement of the structure converged at R = 0.040 and Rw = 0.034 (3318 data). Selected bond lengths are (in pm): RuP(CH2−)Me2 (trans-atom P), 235.8(1) and 239.3(1); RuP(CH2−)Me2 (trans-atom Cl), 227.9(1); RuP(CH2−)3, 225.3(1); RuCl (trans-group P(CH2−)3), 252.1(1); and RuCl (trans-group P(CH2)Me2), 250.5(1). Reaction of 1 with LiAlH4 yielded the hydro derivatives cis-Ru(H)Cl[P(CH2CH2CH2PMe2)3] (3) and cis-RuH2[P(CH2CH2CH2PMe2)3] (4), which were characterized by IR and 1H and 31p NMR spectroscopy.  相似文献   

17.
The reactions of a self-assembled silver(I) coordination polymer, [Ag2{μ-PriN(PPh2)2}(μ-NO3)2]n (1) with various bidentate N-donor ligands such as DABCO, 2,2′-bipyridyl and 1,10-phenanthroline yield 1-D helices or π-π stacked polymers, depending on the chelate vector of the N-donor ligand. The molecular structures of the resultant complexes, [Ag2{μ-PriN(PPh2)2}(DABCO)(NO3)2]n (2), [Ag2{μ-PriN(PPh2)2}(2,2′-bipy)2(NO3)2] (3) and [Ag2{μ-PriN(PPh2)2}(1,10-phen)2](NO3)2 (4) have been confirmed by single-crystal X-ray diffraction. Complex 2 exists as an infinite helical polymer because of the exo-bidentate nature of DABCO. Complex 3 assumes a 2D grid motif as a result of intermolecular π-π stacking among adjacent bipyridine moieties. The phenanthroline complex 4 exhibits strong inter- and intramolecular π-π stacking interactions.  相似文献   

18.
Complexes [Bi(2AcPh)Cl2]·0.5H2O (1), [Bi(2AcpClPh)Cl2] (2), [Bi(2AcpNO2Ph)Cl2] (3), [Bi(2AcpOHPh)Cl2]·2H2O (4), [Bi(H2BzPh)Cl3]·2H2O (5), [Bi(H2BzpClPh)Cl3] (6), [Bi(2BzpNO2Ph)Cl2]·2H2O (7) and [Bi(H2BzpOHPh)Cl3]·2H2O (8) were obtained with 2-acetylpyridine phenylhydrazone (H2AcPh), its -para-chloro-phenyl- (H2AcpClPh), -para-nitro-phenyl (H2AcpNO2Ph) and -para-hydroxy-phenyl (H2AcpOHPh) derivatives, as well as with the 2-benzoylpyridine phenylhydrazone analogues (H2BzPh, H2BzpClPh, H2BzpNO2Ph, H2BzpOHPh).Upon coordination to bismuth(III) antibacterial activity against Gram-positive and Gram-negative bacterial strains significantly improved except for complex (4).The cytotoxic effects of the compounds under study were evaluated on HL-60, Jurkat and THP-1 leukemia, and on MCF-7 and HCT-116 solid tumor cells, as well as on non-malignant Vero cells. In general, 2-acetylpyridine-derived hydrazones proved to be more potent and more selective as cytotoxic agents than the corresponding 2-benzoylpyridine-derived counterparts.Exposure of HCT-116 cells to H2AcpClPh, H2AcpNO2Ph and complex (3) led to 99% decrease of the clonogenic survival. The IC50 values of these compounds were three-fold smaller when cells were cultured in soft-agar (3D) than when cells were cultured in monolayer (2D), suggesting that they constitute interesting scaffolds, which should be considered in further studies aiming to develop new drug candidates for the treatment of colon cancer.  相似文献   

19.
The sec, rac-CH3Co(H2O)L2+ (L=5,7,7,12,14,14-hexamethyl-1,4,8,11-tetraazacyclotetradeca-4,11-diene) was prepared successfully via meso-CH3Co(H2O)L2+ in aqueous solution. The isomerizations from meso-RCo(H2O)L2+ (R=CH3, C2H5 and C3H7) and sec, rac-CH3Co(H2O)L2+ to pri, rac-RCo(H2O)L2+ were both base catalyzed in aqueous solution. The kinetic results showed the reaction to be first order in both organocobalt complex and hydroxide ion with the reactivity order for the alkyl group being C3H7 ∼ C2H5 ? CH3. However, the conversion from the most steric hindered isomer form of sec, rac- was slow. The ratio of the isomerization rate constants between meso-CH3Co(H2O)L2+ and sec, rac-CH3Co(H2O)L2+ to pri, rac-CH3Co(H2O)L2+ is almost a factor of 100. The thermodynamic activation parameters for these isomerization reactions were investigated.  相似文献   

20.
Octahedral cis-Fe(CH3)2{2-(benzoyl)pyridyl-N,O}(PMe3)2 (1), square-pyramidal Co(CH3){2-(benzoyl)pyridyl-N,O}(PMe3)2 (2), and triangular-planar Ni{2-(benzoyl)pyridyl-η2-C,O}(PMe3)2 (3) have been synthesized by reaction of 2-benzoylpyridine with thermally labile Fe(CH3)2(PMe3)4 and Co(CH3)(PMe3)4 complexes. With Ni(CH3)2(PMe3)3, reductive elimination of ethane is observed when a η2-C,O-coordination is constituted. The complexes were investigated by NMR spectroscopic methods and the molecular structures of 1 and 2 were determined by X-ray crystallography.  相似文献   

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